<?xml version="1.0" encoding="UTF-8"?>
<?xml-stylesheet type="text/xsl" href="https://m2.mtmt.hu/xsl/gui3.xsl" ?>
<myciteResult>
  <serverUrl>https://m2.mtmt.hu/</serverUrl>
  <labelLang>hun</labelLang>
  <responseDate>2026-09-21 02:13</responseDate>
  <content>
    <publication>
      <otype>JournalArticle</otype>
      <mtid>34644013</mtid>
      <status>VALIDATED</status>
      <published>true</published>
      <comment>Department of Molecular Biology, Semmelweis University, Budapest, Hungary            
            Division of Oncology, Department of Internal Medicine and Oncology, Semmelweis University, Budapest, Hungary            
            Turbine Ltd, Budapest, Hungary            
            Export Date: 17 June 2024            
            CODEN: CMLSF            
            Correspondence Address: Csermely, P.; Department of Molecular Biology, Hungary; email: csermely.peter@med.semmelweis-univ.hu</comment>
      <unhandledTickets>0</unhandledTickets>
      <deleted>false</deleted>
      <lastRefresh>2026-09-07T14:33:18.234+0000</lastRefresh>
      <lastModified>2024-03-18T07:53:19.860+0000</lastModified>
      <created>2024-02-20T11:59:48.125+0000</created>
      <creator>
        <snippet>true</snippet>
        <mtid>10063755</mtid>
        <familyName>Keresztes</familyName>
        <givenName>Dávid</givenName>
        <link>/api/author/10063755</link>
        <otype>Author</otype>
        <label>Keresztes Dávid (urológia)</label>
        <published>true</published>
        <oldId>10063755</oldId>
      </creator>
      <lastDuplumSearch>2026-05-06T11:11:01.982+0000</lastDuplumSearch>
      <validated>2024-03-18T07:53:20.146+0000</validated>
      <validator>
        <snippet>true</snippet>
        <mtid>10080205</mtid>
        <familyName>Szalóky-Siki</familyName>
        <givenName>Ágnes</givenName>
        <link>/api/admin/10080205</link>
        <otype>Admin</otype>
        <label>Szalóky-Siki Ágnes (SE_KK_Admin5_SZSA, admin)</label>
        <published>true</published>
      </validator>
      <core>true</core>
      <publicationPending>false</publicationPending>
      <type>
        <snippet>true</snippet>
        <mtid>24</mtid>
        <code>24</code>
        <link>/api/publicationtype/24</link>
        <otype>PublicationType</otype>
        <label>Folyóiratcikk</label>
        <listPosition>1</listPosition>
        <published>true</published>
        <oldId>24</oldId>
        <otypeName>JournalArticle</otypeName>
      </type>
      <subType>
        <snippet>true</snippet>
        <mtid>1134514</mtid>
        <nameEng>Survey paper</nameEng>
        <docType>
          <snippet>true</snippet>
          <mtid>24</mtid>
          <code>24</code>
          <link>/api/publicationtype/24</link>
          <otype>PublicationType</otype>
          <label>Folyóiratcikk</label>
          <listPosition>1</listPosition>
          <published>true</published>
          <oldId>24</oldId>
          <otypeName>JournalArticle</otypeName>
        </docType>
        <link>/api/subtype/1134514</link>
        <name>Összefoglaló cikk</name>
        <otype>SubType</otype>
        <label>Összefoglaló cikk (Folyóiratcikk)</label>
        <listPosition>102</listPosition>
        <published>true</published>
        <oldId>1134514</oldId>
      </subType>
      <category>
        <snippet>true</snippet>
        <mtid>1</mtid>
        <link>/api/category/1</link>
        <otype>Category</otype>
        <label>Tudományos</label>
        <published>true</published>
        <oldId>1</oldId>
      </category>
      <firstAuthor>Veres, Tamás</firstAuthor>
      <title>Cellular forgetting, desensitisation, stress and ageing in signalling networks. When do cells refuse to learn more?</title>
      <journal>
        <snippet>true</snippet>
        <sciIndexed>true</sciIndexed>
        <link>/api/journal/11507</link>
        <reviewType>REVIEWED</reviewType>
        <label>CELLULAR AND MOLECULAR LIFE SCIENCES 1420-682X 1420-9071</label>
        <published>true</published>
        <hungarian>false</hungarian>
        <oldId>11507</oldId>
        <noIF>false</noIF>
        <mtid>11507</mtid>
        <scopusIndexed>true</scopusIndexed>
        <pIssn>1420-682X</pIssn>
        <eIssn>1420-9071</eIssn>
        <otype>Journal</otype>
        <lang>FOREIGN</lang>
      </journal>
      <volume>81</volume>
      <issue>1</issue>
      <internalId>97</internalId>
      <firstPageOrInternalIdForSort>97</firstPageOrInternalIdForSort>
      <pageLength>13</pageLength>
      <publishedYear>2024</publishedYear>
      <abstractText>Recent findings show that single, non-neuronal cells are also able to learn signalling responses developing cellular memory. In cellular learning nodes of signalling networks strengthen their interactions e.g. by the conformational memory of intrinsically disordered proteins, protein translocation, miRNAs, lncRNAs, chromatin memory and signalling cascades. This can be described by a generalized, unicellular Hebbian learning process, where those signalling connections, which participate in learning, become stronger. Here we review those scenarios, where cellular signalling is not only repeated in a few times (when learning occurs), but becomes too frequent, too large, or too complex and overloads the cell. This leads to desensitisation of signalling networks by decoupling signalling components, receptor internalization, and consequent downregulation. These molecular processes are examples of anti-Hebbian learning and ‘forgetting’ of signalling networks. Stress can be perceived as signalling overload inducing the desensitisation of signalling pathways. Ageing occurs by the summative effects of cumulative stress downregulating signalling. We propose that cellular learning desensitisation, stress and ageing may be placed along the same axis of more and more intensive (prolonged or repeated) signalling. We discuss how cells might discriminate between repeated and unexpected signals, and highlight the Hebbian and anti-Hebbian mechanisms behind the fold-change detection in the NF- κ B signalling pathway. We list drug design methods using Hebbian learning (such as chemically-induced proximity) and clinical treatment modalities inducing (cancer, drug allergies) desensitisation or avoiding drug-induced desensitisation. A better discrimination between cellular learning, desensitisation and stress may open novel directions in drug design, e.g. helping to overcome drug resistance.</abstractText>
      <fundings>
        <funding>
          <otype>Funding</otype>
          <mtid>2037586</mtid>
          <link>/api/funding/2037586</link>
          <label>(K131458)</label>
          <published>false</published>
          <snippet>true</snippet>
        </funding>
        <funding>
          <otype>Funding</otype>
          <mtid>2037587</mtid>
          <link>/api/funding/2037587</link>
          <label>(TKP2021-EGA-24)</label>
          <published>false</published>
          <snippet>true</snippet>
        </funding>
        <funding>
          <otype>Funding</otype>
          <mtid>2037588</mtid>
          <link>/api/funding/2037588</link>
          <label>(Molecular Biology Thematic Programme of Semmelweis University)</label>
          <published>false</published>
          <snippet>true</snippet>
        </funding>
        <funding>
          <otype>Funding</otype>
          <mtid>2037589</mtid>
          <link>/api/funding/2037589</link>
          <label>(Open access funding provided by Semmelweis University)</label>
          <published>false</published>
          <snippet>true</snippet>
        </funding>
      </fundings>
      <digital>true</digital>
      <printed>true</printed>
      <sourceYear>2024</sourceYear>
      <foreignEdition>true</foreignEdition>
      <foreignLanguage>true</foreignLanguage>
      <fullPublication>true</fullPublication>
      <conferencePublication>false</conferencePublication>
      <nationalOrigin>true</nationalOrigin>
      <missingAuthor>false</missingAuthor>
      <oaType>NONE</oaType>
      <oaCheckDate>2026-09-07</oaCheckDate>
      <oaFree>false</oaFree>
      <citationCount>10</citationCount>
      <citationCountUnpublished>0</citationCountUnpublished>
      <citationCountWoOther>10</citationCountWoOther>
      <independentCitCountWoOther>8</independentCitCountWoOther>
      <nationalOriginCitationCount>2</nationalOriginCitationCount>
      <foreignEditionCitationCount>10</foreignEditionCitationCount>
      <doiCitationCount>10</doiCitationCount>
      <wosCitationCount>9</wosCitationCount>
      <scopusCitationCount>10</scopusCitationCount>
      <wosScopusCitationCount>10</wosScopusCitationCount>
      <wosScopusCitationCountWoOther>10</wosScopusCitationCountWoOther>
      <wosScopusIndependentCitationCount>8</wosScopusIndependentCitationCount>
      <wosScopusIndependentCitationCountWoOther>8</wosScopusIndependentCitationCountWoOther>
      <independentCitationCount>8</independentCitationCount>
      <selfCitationCount>2</selfCitationCount>
      <unhandledCitationCount>0</unhandledCitationCount>
      <citingPubCount>10</citingPubCount>
      <independentCitingPubCount>8</independentCitingPubCount>
      <citingPubCountWoOther>10</citingPubCountWoOther>
      <independentCitingPubCountWoOther>8</independentCitingPubCountWoOther>
      <unhandledCitingPubCount>0</unhandledCitingPubCount>
      <citedPubCount>8</citedPubCount>
      <citedCount>8</citedCount>
      <pubStats>
        <types>
          <type>Folyóiratcikk</type>
          <typeEng>Journal Article</typeEng>
          <code>24</code>
          <count>10</count>
        </types>
        <types>
          <type>Könyvrészlet</type>
          <typeEng>Chapter in Book</typeEng>
          <code>25</code>
          <count>0</count>
        </types>
        <types>
          <type>Könyv</type>
          <typeEng>Book</typeEng>
          <code>23</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb konferenciaközlemény</type>
          <typeEng>Conference paper</typeEng>
          <code>31</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb konferenciakötet</type>
          <typeEng>Conference proceedings</typeEng>
          <code>32</code>
          <count>0</count>
        </types>
        <types>
          <type>Oltalmi formák</type>
          <typeEng>Protection forms</typeEng>
          <code>26</code>
          <count>0</count>
        </types>
        <types>
          <type>Disszertáció</type>
          <typeEng>Thesis</typeEng>
          <code>28</code>
          <count>0</count>
        </types>
        <types>
          <type>Egyéb</type>
          <typeEng>Miscellaneous</typeEng>
          <code>29</code>
          <count>0</count>
        </types>
        <types>
          <type>Alkotás</type>
          <typeEng>Achievement</typeEng>
          <code>22</code>
          <count>0</count>
        </types>
        <types>
          <type>Kutatási adat</type>
          <typeEng>Research data</typeEng>
          <code>33</code>
          <count>0</count>
        </types>
        <citationTypes>
          <type>Folyóiratcikk</type>
          <typeEng>Journal Article</typeEng>
          <code>24</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Könyvrészlet</type>
          <typeEng>Chapter in Book</typeEng>
          <code>25</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Könyv</type>
          <typeEng>Book</typeEng>
          <code>23</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb konferenciaközlemény</type>
          <typeEng>Conference paper</typeEng>
          <code>31</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb konferenciakötet</type>
          <typeEng>Conference proceedings</typeEng>
          <code>32</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Oltalmi formák</type>
          <typeEng>Protection forms</typeEng>
          <code>26</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Disszertáció</type>
          <typeEng>Thesis</typeEng>
          <code>28</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Egyéb</type>
          <typeEng>Miscellaneous</typeEng>
          <code>29</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Alkotás</type>
          <typeEng>Achievement</typeEng>
          <code>22</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <citationTypes>
          <type>Kutatási adat</type>
          <typeEng>Research data</typeEng>
          <code>33</code>
          <countUnknown>0</countUnknown>
          <countIndependent>0</countIndependent>
          <countSelfCitation>0</countSelfCitation>
        </citationTypes>
        <years>
          <year>2025</year>
          <publicationCount>0</publicationCount>
          <citationCount>6</citationCount>
          <independentCitationCount>5</independentCitationCount>
          <citingPubCount>6</citingPubCount>
          <independentCitingPubCount>5</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
        <years>
          <year>2026</year>
          <publicationCount>0</publicationCount>
          <citationCount>4</citationCount>
          <independentCitationCount>3</independentCitationCount>
          <citingPubCount>4</citingPubCount>
          <independentCitingPubCount>3</independentCitingPubCount>
          <oaStats/>
          <oaStats2/>
        </years>
      </pubStats>
      <ratingsForSort>D1</ratingsForSort>
      <hasCitationDuplums>false</hasCitationDuplums>
      <inSelectedPubs>10063755,1035707</inSelectedPubs>
      <importDuplum>false</importDuplum>
      <importOverwritten>false</importOverwritten>
      <importSkipped>false</importSkipped>
      <userChangeableUntil>2024-02-22T12:29:29.098+0000</userChangeableUntil>
      <directInstitutesForSort>Belgyógyászati és Onkológiai Klinika (SE / AOK / K); Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</directInstitutesForSort>
      <ownerAuthorCount>8</ownerAuthorCount>
      <ownerInstituteCount>15</ownerInstituteCount>
      <directInstituteCount>2</directInstituteCount>
      <authorCount>9</authorCount>
      <contributorCount>0</contributorCount>
      <hasQualityFactor>true</hasQualityFactor>
      <languages>
        <language>
          <otype>Language</otype>
          <mtid>10002</mtid>
          <link>/api/language/10002</link>
          <label>Angol</label>
          <name>Angol</name>
          <nameEng>English</nameEng>
          <published>true</published>
          <oldId>2</oldId>
          <snippet>true</snippet>
        </language>
      </languages>
      <authorships>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938942</mtid>
          <link>/api/authorship/114938942</link>
          <label>Veres, Tamás [Veres, Tamás (Molekuláris biológia), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>1</listPosition>
          <share>0.111</share>
          <first>true</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10094388</mtid>
            <link>/api/author/10094388</link>
            <label>Veres Tamás (Molekuláris biológia)</label>
            <familyName>Veres</familyName>
            <givenName>Tamás</givenName>
            <published>true</published>
            <snippet>true</snippet>
          </author>
          <familyName>Veres</familyName>
          <givenName>Tamás</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938943</mtid>
          <link>/api/authorship/114938943</link>
          <label>Kerestély, Márk* [Kerestély, Márk (Bioinformatika), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>2</listPosition>
          <share>0.111</share>
          <first>true</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10088319</mtid>
            <link>/api/author/10088319</link>
            <label>Kerestély Márk (Bioinformatika)</label>
            <familyName>Kerestély</familyName>
            <givenName>Márk</givenName>
            <published>true</published>
            <snippet>true</snippet>
          </author>
          <familyName>Kerestély</familyName>
          <givenName>Márk</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938944</mtid>
          <link>/api/authorship/114938944</link>
          <label>Kovács, Borbála M. [Kovács, Borbála (Biológiai hálózatok), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>3</listPosition>
          <share>0.11111111</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10072470</mtid>
            <link>/api/author/10072470</link>
            <label>Kovács Borbála (Biológiai hálózatok)</label>
            <familyName>Kovács</familyName>
            <givenName>Borbála</givenName>
            <published>true</published>
            <snippet>true</snippet>
          </author>
          <familyName>Kovács</familyName>
          <givenName>Borbála M.</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938945</mtid>
          <link>/api/authorship/114938945</link>
          <label>Keresztes, Dávid [Keresztes, Dávid (urológia), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>4</listPosition>
          <share>0.11111111</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10063755</mtid>
            <link>/api/author/10063755</link>
            <label>Keresztes Dávid (urológia)</label>
            <familyName>Keresztes</familyName>
            <givenName>Dávid</givenName>
            <published>true</published>
            <oldId>10063755</oldId>
            <snippet>true</snippet>
          </author>
          <familyName>Keresztes</familyName>
          <givenName>Dávid</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938946</mtid>
          <link>/api/authorship/114938946</link>
          <label>Schulc, Klára [Schulc, Klára (Tumorbiológia), szerző] Belgyógyászati és Onkológiai Klinika (SE / AOK / K); Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>5</listPosition>
          <share>0.111</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10078255</mtid>
            <link>/api/author/10078255</link>
            <label>Schulc Klára (Tumorbiológia)</label>
            <familyName>Schulc</familyName>
            <givenName>Klára</givenName>
            <published>true</published>
            <snippet>true</snippet>
          </author>
          <familyName>Schulc</familyName>
          <givenName>Klára</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938947</mtid>
          <link>/api/authorship/114938947</link>
          <label>Seitz, Erik</label>
          <listPosition>6</listPosition>
          <share>0.11111111</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <familyName>Seitz</familyName>
          <givenName>Erik</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938948</mtid>
          <link>/api/authorship/114938948</link>
          <label>Vassy, Zsolt [Vassy, Zsolt (informatika), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>7</listPosition>
          <share>0.11111111</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10049810</mtid>
            <link>/api/author/10049810</link>
            <label>Vassy Zsolt (informatika)</label>
            <familyName>Vassy</familyName>
            <givenName>Zsolt</givenName>
            <published>true</published>
            <oldId>10049810</oldId>
            <snippet>true</snippet>
          </author>
          <familyName>Vassy</familyName>
          <givenName>Zsolt</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938949</mtid>
          <link>/api/authorship/114938949</link>
          <label>Veres, Dániel V. [Veres, Dániel (Molekuláris orvos...), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>8</listPosition>
          <share>0.11111111</share>
          <first>false</first>
          <last>false</last>
          <corresponding>false</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>10050101</mtid>
            <link>/api/author/10050101</link>
            <label>Veres Dániel (Molekuláris orvostudományok)</label>
            <familyName>Veres</familyName>
            <givenName>Dániel</givenName>
            <published>true</published>
            <oldId>10050101</oldId>
            <snippet>true</snippet>
          </author>
          <familyName>Veres</familyName>
          <givenName>Dániel V.</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
        <authorship>
          <otype>PersonAuthorship</otype>
          <mtid>114938950</mtid>
          <link>/api/authorship/114938950</link>
          <label>Csermely, Peter ✉ [Csermely, Péter (Biokémia), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)</label>
          <listPosition>9</listPosition>
          <share>0.111</share>
          <first>false</first>
          <last>true</last>
          <corresponding>true</corresponding>
          <author>
            <otype>Author</otype>
            <mtid>1035707</mtid>
            <link>/api/author/1035707</link>
            <label>Csermely Péter (Biokémia)</label>
            <familyName>Csermely</familyName>
            <givenName>Péter</givenName>
            <published>true</published>
            <oldId>1035707</oldId>
            <snippet>true</snippet>
          </author>
          <familyName>Csermely</familyName>
          <givenName>Peter</givenName>
          <authorTyped>true</authorTyped>
          <editorTyped>false</editorTyped>
          <otherTyped>false</otherTyped>
          <type>
            <otype>AuthorshipType</otype>
            <mtid>1</mtid>
            <link>/api/authorshiptype/1</link>
            <label>Szerző</label>
            <code>0</code>
            <published>true</published>
            <oldId>0</oldId>
            <snippet>true</snippet>
          </type>
          <published>false</published>
          <snippet>true</snippet>
        </authorship>
      </authorships>
      <identifiers>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25633968</mtid>
          <link>/api/publicationidentifier/25633968</link>
          <label>DOI: 10.1007/s00018-024-05112-7</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>6</mtid>
            <link>/api/publicationsource/6</link>
            <label>DOI</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10001</mtid>
              <link>/api/publicationsourcetype/10001</link>
              <label>DOI</label>
              <mayHaveOa>true</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>DOI</name>
            <nameEng>DOI</nameEng>
            <linkPattern>https://doi.org/@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>6</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>10.1007/s00018-024-05112-7</idValue>
          <realUrl>https://doi.org/10.1007/s00018-024-05112-7</realUrl>
          <published>false</published>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25877496</mtid>
          <link>/api/publicationidentifier/25877496</link>
          <label>WoS: 001169720400002</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>1</mtid>
            <link>/api/publicationsource/1</link>
            <label>WoS</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>WoS</name>
            <nameEng>WoS</nameEng>
            <linkPattern>https://www.webofscience.com/wos/woscc/full-record/@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>1</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>001169720400002</idValue>
          <realUrl>https://www.webofscience.com/wos/woscc/full-record/001169720400002</realUrl>
          <published>true</published>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25822212</mtid>
          <link>/api/publicationidentifier/25822212</link>
          <label>Scopus: 85185513445</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>3</mtid>
            <link>/api/publicationsource/3</link>
            <label>Scopus</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>Scopus</name>
            <nameEng>Scopus</nameEng>
            <linkPattern>http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>3</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>85185513445</idValue>
          <realUrl>http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85185513445</realUrl>
          <published>true</published>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>25728800</mtid>
          <link>/api/publicationidentifier/25728800</link>
          <label>PubMed: 38372750</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>17</mtid>
            <link>/api/publicationsource/17</link>
            <label>PubMed</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10003</mtid>
              <link>/api/publicationsourcetype/10003</link>
              <label>Indexelő adatbázis</label>
              <mayHaveOa>false</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>PubMed</name>
            <nameEng>PubMed</nameEng>
            <linkPattern>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=@@@&amp;dopt=Abstract</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>17</oldId>
            <snippet>true</snippet>
          </source>
          <validState>IDENTICAL</validState>
          <idValue>38372750</idValue>
          <realUrl>http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=38372750&amp;dopt=Abstract</realUrl>
          <published>false</published>
          <snippet>true</snippet>
        </identifier>
        <identifier>
          <otype>PublicationIdentifier</otype>
          <mtid>31962268</mtid>
          <link>/api/publicationidentifier/31962268</link>
          <label>Egyéb URL: https://www.scopus.com/pages/publications/85185513445?origin=resultslist</label>
          <source>
            <otype>PlainSource</otype>
            <mtid>40</mtid>
            <link>/api/publicationsource/40</link>
            <label>Egyéb URL</label>
            <type>
              <otype>PublicationSourceType</otype>
              <mtid>10006</mtid>
              <link>/api/publicationsourcetype/10006</link>
              <label>Link</label>
              <mayHaveOa>true</mayHaveOa>
              <published>true</published>
              <snippet>true</snippet>
            </type>
            <name>Egyéb URL</name>
            <nameEng>Other URL</nameEng>
            <linkPattern>@@@</linkPattern>
            <publiclyVisible>true</publiclyVisible>
            <published>true</published>
            <oldId>40</oldId>
            <snippet>true</snippet>
          </source>
          <oaType>NONE</oaType>
          <validState>IDENTICAL</validState>
          <idValue>https://www.scopus.com/pages/publications/85185513445?origin=resultslist</idValue>
          <realUrl>https://www.scopus.com/pages/publications/85185513445?origin=resultslist</realUrl>
          <published>false</published>
          <snippet>true</snippet>
        </identifier>
      </identifiers>
      <subjects>
        <classification>
          <otype>Classification</otype>
          <mtid>12215</mtid>
          <link>/api/classification/12215</link>
          <label>Klinikai orvostan</label>
          <published>true</published>
          <snippet>true</snippet>
        </classification>
      </subjects>
      <ratings>
        <rating>
          <otype>SjrRating</otype>
          <mtid>11486045</mtid>
          <link>/api/sjrrating/11486045</link>
          <label>sjr:D1 (2024) Scopus - Molecular Medicine CELLULAR AND MOLECULAR LIFE SCIENCES 1420-682X 1420-9071</label>
          <listPos>18</listPos>
          <rankValue>0.1</rankValue>
          <type>journal</type>
          <ratingType>
            <otype>RatingType</otype>
            <mtid>10002</mtid>
            <link>/api/ratingtype/10002</link>
            <label>sjr</label>
            <code>sjr</code>
            <published>true</published>
            <snippet>true</snippet>
          </ratingType>
          <subject>
            <otype>ClassificationExternal</otype>
            <mtid>1313</mtid>
            <link>/api/classificationexternal/1313</link>
            <label>Scopus - Molecular Medicine</label>
            <published>true</published>
            <oldId>1313</oldId>
            <snippet>true</snippet>
          </subject>
          <ranking>D1</ranking>
          <calculation>DIRECT</calculation>
          <published>true</published>
          <snippet>true</snippet>
        </rating>
      </ratings>
      <references>
        <reference>
          <otype>Reference</otype>
          <mtid>50316282</mtid>
          <link>/api/reference/50316282</link>
          <label>1. Kandel ER, Dudai Y, Mayford MR (2014) The molecular and systems biology of memory. Cell 157(1):163–186. https://doi.org/10.1016/j.cell.2014.03.001, DOI: 10.1016/j.cell.2014.03.001</label>
          <listPosition>1</listPosition>
          <doi>10.1016/j.cell.2014.03.001</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316283</mtid>
          <link>/api/reference/50316283</link>
          <label>2. Gershman SJ, Balbi PE, Gallistel CR, Gunawardena J (2021) Reconsidering the evidence for learning in single cells. Elife 10:e61907. https://doi.org/10.7554/eLife.61907, DOI: 10.7554/eLife.61907</label>
          <listPosition>2</listPosition>
          <doi>10.7554/eLife.61907</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316284</mtid>
          <link>/api/reference/50316284</link>
          <label>3. D’Urso A, Takahashi YH, Xiong B, Marone J, Coukos R, Randise-Hinchliff C, Wang JP, Shilatifard A, Brickner JH (2016) Set1/COMPASS and mediator are repurposed to promote epigenetic transcriptional memory. Elife 5:e16691. https://doi.org/10.7554/eLife.16691, DOI: 10.7554/eLife.16691</label>
          <listPosition>3</listPosition>
          <doi>10.7554/eLife.16691</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316285</mtid>
          <link>/api/reference/50316285</link>
          <label>4. Chernova TA, Chernoff YO, Wilkinson KD (2017) Prion-based memory of heat stress in yeast. Prion 11(3):151–161. https://doi.org/10.1080/19336896.2017.1328342, DOI: 10.1080/19336896.2017.1328342</label>
          <listPosition>4</listPosition>
          <doi>10.1080/19336896.2017.1328342</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316286</mtid>
          <link>/api/reference/50316286</link>
          <label>5. Liu N, Avramova Z (2016) Molecular mechanism of the priming by jasmonic acid of specific dehydration stress response genes in Arabidopsis. Epigenetics Chromatin 9:8. https://doi.org/10.1186/s13072-016-0057-5, DOI: 10.1186/s13072-016-0057-5</label>
          <listPosition>5</listPosition>
          <doi>10.1186/s13072-016-0057-5</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316287</mtid>
          <link>/api/reference/50316287</link>
          <label>6. Stief A, Altmann S, Hoffmann K, Pant BD, Scheible WR, Bäurle I (2014) Arabidopsis miR156 regulates tolerance to recurring environmental stress through SPL transcription factors. Plant Cell 26(4):1792–1807. https://doi.org/10.1105/tpc.114.123851, DOI: 10.1105/tpc.114.123851</label>
          <listPosition>6</listPosition>
          <doi>10.1105/tpc.114.123851</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316288</mtid>
          <link>/api/reference/50316288</link>
          <label>7. Li P, Yang H, Wang L, Liu H, Huo H, Zhang C, Liu A, Zhu A, Hu J, Lin Y, Liu L (2019) Physiological and transcriptome analyses reveal short-term responses and formation of memory under drought stress in rice. Front Genet 10:55. https://doi.org/10.3389/fgene.2019.00055, DOI: 10.3389/fgene.2019.00055</label>
          <listPosition>7</listPosition>
          <doi>10.3389/fgene.2019.00055</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316289</mtid>
          <link>/api/reference/50316289</link>
          <label>8. Kamada R, Yang W, Zhang Y, Patel MC, Yang Y, Ouda R, Dey A, Wakabayashi Y, Sakaguchi K, Fujita T, Tamura T, Zhu J, Ozato K (2018) Interferon stimulation creates chromatin marks and establishes transcriptional memory. Proc Natl Acad Sci U S A 115(39):E9162–E9171. https://doi.org/10.1073/pnas.1720930115, DOI: 10.1073/pnas.1720930115</label>
          <listPosition>8</listPosition>
          <doi>10.1073/pnas.1720930115</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316290</mtid>
          <link>/api/reference/50316290</link>
          <label>9. Pace L, Goudot C, Zueva E, Gueguen P, Burgdorf N, Waterfall JJ, Quivy JP, Almouzni G, Amigorena S (2018) The epigenetic control of stemness in CD8(+) T cell fate commitment. Science 359(6372):177–186, DOI: 10.1126/science.aah6499</label>
          <listPosition>9</listPosition>
          <doi>10.1126/science.aah6499</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316291</mtid>
          <link>/api/reference/50316291</link>
          <label>10. Csermely P, Kunsic N, Mendik P, Kerestély M, Faragó T, Veres DV, Tompa P (2020) Learning of signaling networks: molecular mechanisms. Trends Biochem Sci 45(4):284–294. https://doi.org/10.1016/j.tibs.2019.12.005, DOI: 10.1016/j.tibs.2019.12.005</label>
          <listPosition>10</listPosition>
          <doi>10.1016/j.tibs.2019.12.005</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316292</mtid>
          <link>/api/reference/50316292</link>
          <label>11. Tompa P (2016) The principle of conformational signaling. Chem Soc Rev 45(15):4252–4284. https://doi.org/10.1039/c6cs00011h, DOI: 10.1039/c6cs00011h</label>
          <listPosition>11</listPosition>
          <doi>10.1039/c6cs00011h</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316293</mtid>
          <link>/api/reference/50316293</link>
          <label>12. Van Roey K, Gibson TJ, Davey NE (2012) Motif switches: decision-making in cell regulation. Curr Opin Struct Biol 22(3):378–385. https://doi.org/10.1016/j.sbi.2012.03.004, DOI: 10.1016/j.sbi.2012.03.004</label>
          <listPosition>12</listPosition>
          <doi>10.1016/j.sbi.2012.03.004</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316294</mtid>
          <link>/api/reference/50316294</link>
          <label>13. Caudron F, Barral Y (2014) Mnemons: encoding memory by protein super-assembly. Microb Cell 1(3):100–102. https://doi.org/10.15698/mic2014.01.134, DOI: 10.15698/mic2014.01.134</label>
          <listPosition>13</listPosition>
          <doi>10.15698/mic2014.01.134</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316295</mtid>
          <link>/api/reference/50316295</link>
          <label>14. Reichert P, Caudron F (2021) Mnemons and the memorization of past signaling events. Curr Opin Cell Biol 69(4):127–135. https://doi.org/10.1016/j.ceb.2021.01.005, DOI: 10.1016/j.ceb.2021.01.005</label>
          <listPosition>14</listPosition>
          <doi>10.1016/j.ceb.2021.01.005</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316296</mtid>
          <link>/api/reference/50316296</link>
          <label>15. Lau Y, Oamen HP, Grogg M, Parfenova I, Saarikangas J, Hannay R, Nichols RA, Hilvert D, Barral Y, Caudron F (2022) Whi3 mnemon association with endoplasmic reticulum membranes confines the memory of deceptive courtship to the yeast mother cell. Curr Biol 32(5):963–974. https://doi.org/10.1016/j.cub.2022.01.002, DOI: 10.1016/j.cub.2022.01.002</label>
          <listPosition>15</listPosition>
          <doi>10.1016/j.cub.2022.01.002</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316297</mtid>
          <link>/api/reference/50316297</link>
          <label>16. Csermely P, Korcsmáros T, Kiss HJ, London G, Nussinov R (2013) Structure and dynamics of molecular networks: a novel paradigm of drug discovery: a comprehensive review. Pharmacol The 138(3):333–408. https://doi.org/10.1016/j.pharmthera.2013.01.016, DOI: 10.1016/j.pharmthera.2013.01.016</label>
          <listPosition>16</listPosition>
          <doi>10.1016/j.pharmthera.2013.01.016</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316298</mtid>
          <link>/api/reference/50316298</link>
          <label>17. Mendik P, Dobronyi L, Hári F, Kerepesi C, Maia-Moço L, Buszlai D, Csermely P, Veres DV (2019) Translocatome: a novel resource for the analysis of protein translocation between cellular organelles. Nucleic Acids Res 47(D1):D495–D505. https://doi.org/10.1093/nar/gky1044, DOI: 10.1093/nar/gky1044</label>
          <listPosition>17</listPosition>
          <doi>10.1093/nar/gky1044</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316299</mtid>
          <link>/api/reference/50316299</link>
          <label>18. Qu Y, Jiang J, Liu X, Yang X, Tang C (2020) Non-epigenetic mechanisms enable short memories of the environment for cell cycle commitment. bioRxiv. https://doi.org/10.1101/2020.08.14.250704v1, DOI: 10.1101/2020.08.14.250704v1</label>
          <listPosition>18</listPosition>
          <doi>10.1101/2020.08.14.250704v1</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316300</mtid>
          <link>/api/reference/50316300</link>
          <label>19. Paneni F, Mocharla P, Akhmedov A, Costantino S, Osto E, Volpe M, Lüscher TF, Cosentino F (2012) Gene silencing of the mitochondrial adaptor p66(Shc) suppresses vascular hyperglycemic memory in diabetes. Circ Res 111(3):278–289. https://doi.org/10.1161/circresaha.112.266593, DOI: 10.1161/circresaha.112.266593</label>
          <listPosition>19</listPosition>
          <doi>10.1161/circresaha.112.266593</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316301</mtid>
          <link>/api/reference/50316301</link>
          <label>20. Ramon S, Bancos S, Serhan CN, Phipps RP (2014) Lipoxin A4 modulates adaptive immunity by decreasing memory B-cell responses via an ALX/FPR2-dependent mechanism. Eur J Immunol 44(2):357–369. https://doi.org/10.1002/eji.201343316, DOI: 10.1002/eji.201343316</label>
          <listPosition>20</listPosition>
          <doi>10.1002/eji.201343316</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316302</mtid>
          <link>/api/reference/50316302</link>
          <label>21. Pallett MA, Ren H, Zhang RY, Scutts SR, Gonzalez L, Zhu Z, Maluquer de Motes C, Smith GL (2019) Vaccinia virus BBK E3 ligase adaptor A55 targets importin-dependent NF-κB activation and inhibits CD8+ T-Cell memory. J Virol 93(10):e00051-e119. https://doi.org/10.1128/JVI.00051-19, DOI: 10.1128/JVI.00051-19</label>
          <listPosition>21</listPosition>
          <doi>10.1128/JVI.00051-19</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316303</mtid>
          <link>/api/reference/50316303</link>
          <label>22. Li CX, Talele NP, Boo S, Koehler A, Knee-Walden E, Balestrini JL, Speight P, Kapus A, Hinz B (2017) MicroRNA-21 preserves the fibrotic mechanical memory of mesenchymal stem cells. Nat Mater 16(3):379–389. https://doi.org/10.1038/nmat4780, DOI: 10.1038/nmat4780</label>
          <listPosition>22</listPosition>
          <doi>10.1038/nmat4780</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316304</mtid>
          <link>/api/reference/50316304</link>
          <label>23. Seeley JJ, Baker RG, Mohamed G, Bruns T, Hayden MS, Deshmukh SD, Freedberg DE, Ghosh S (2018) Induction of innate immune memory via microRNA targeting of chromatin remodelling factors. Nature 559(7712):114–119. https://doi.org/10.1038/s41586-018-0253-5, DOI: 10.1038/s41586-018-0253-5</label>
          <listPosition>23</listPosition>
          <doi>10.1038/s41586-018-0253-5</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316305</mtid>
          <link>/api/reference/50316305</link>
          <label>24. Hudson WH, Prokhnevska N, Gensheimer J, Akondy R, McGuire DJ, Ahmed R, Kissick HT (2019) Expression of novel long noncoding RNAs defines virus-specific effector and memory CD8+ T cells. Nat Commun 10(1):196. https://doi.org/10.1038/s41467-018-07956-7, DOI: 10.1038/s41467-018-07956-7</label>
          <listPosition>24</listPosition>
          <doi>10.1038/s41467-018-07956-7</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316306</mtid>
          <link>/api/reference/50316306</link>
          <label>25. Berenguer J, Celià-Terrassa T (2021) Cell memory of epithelial-mesenchymal plasticity in cancer. Curr Op Cell Biol 69(4):103–110. https://doi.org/10.1016/j.ceb.2021.01.001, DOI: 10.1016/j.ceb.2021.01.001</label>
          <listPosition>25</listPosition>
          <doi>10.1016/j.ceb.2021.01.001</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316307</mtid>
          <link>/api/reference/50316307</link>
          <label>26. Sump B, Brickner DG, D’Urso A, Kim SH, Brickner JH (2022) Mitotically heritable, RNA polymerase II-independent H3K4 dimethylation stimulates INO1 transcriptional memory. Elife 11:e77646. https://doi.org/10.7554/eLife.77646, DOI: 10.7554/eLife.77646</label>
          <listPosition>26</listPosition>
          <doi>10.7554/eLife.77646</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316308</mtid>
          <link>/api/reference/50316308</link>
          <label>27. Friedrich T, Oberkofler V, Trindade I, Altmann S, Brzezinka K, Lämke J, Gorka M, Kappel C, Sokolowska E, Skirycz A, Graf A, Bäurle I (2021) Heteromeric HSFA2/HSFA3 complexes drive transcriptional memory after heat stress in Arabidopsis. Nat Commun 12(1):3426. https://doi.org/10.1038/s41467-021-23786-6, DOI: 10.1038/s41467-021-23786-6</label>
          <listPosition>27</listPosition>
          <doi>10.1038/s41467-021-23786-6</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316309</mtid>
          <link>/api/reference/50316309</link>
          <label>28. Gialitakis M, Arampatzi P, Makatounakis T, Papamatheakis J (2010) Gamma interferon-dependent transcriptional memory via relocalization of a gene locus to PML nuclear bodies. Mol Cell Biol 30(8):2046–2056. https://doi.org/10.1128/MCB.00906-09, DOI: 10.1128/MCB.00906-09</label>
          <listPosition>28</listPosition>
          <doi>10.1128/MCB.00906-09</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316310</mtid>
          <link>/api/reference/50316310</link>
          <label>29. Komori HK, Hart T, LaMere SA, Chew PV, Salomon DR (2015) Defining CD4 T cell memory by the epigenetic landscape of CpG DNA methylation. J Immunol 194(4):1565–1579. https://doi.org/10.4049/jimmunol.1401162, DOI: 10.4049/jimmunol.1401162</label>
          <listPosition>29</listPosition>
          <doi>10.4049/jimmunol.1401162</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316311</mtid>
          <link>/api/reference/50316311</link>
          <label>30. Nuñez JK, Chen J, Pommier GC, Cogan JZ, Replogle JM, Adriaens C, Ramadoss GN, Shi Q, Hung KL, Samelson AJ, Pogson AN, Kim JYS, Chung A, Leonetti MD, Chang HY, Kampmann M, Bernstein BE, Hovestadt V, Gilbert LA, Weissman JS (2021) Genome-wide programmable transcriptional memory by CRISPR-based epigenome editing. Cell 184(9):2503–2519. https://doi.org/10.1016/j.cell.2021.03.025, DOI: 10.1016/j.cell.2021.03.025</label>
          <listPosition>30</listPosition>
          <doi>10.1016/j.cell.2021.03.025</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316312</mtid>
          <link>/api/reference/50316312</link>
          <label>31. Meriem ZB, Khalil Y, Hersen P, Fabre E (2019) Hyperosmotic stress response memory is modulated by gene positioning in yeast. Cells 8(6):582. https://doi.org/10.3390/cells8060582, DOI: 10.3390/cells8060582</label>
          <listPosition>31</listPosition>
          <doi>10.3390/cells8060582</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316313</mtid>
          <link>/api/reference/50316313</link>
          <label>32. Light WH, Freaney J, Sood V, Thompson A, D’Urso A, Horvath CM, Brickner JH (2013) A conserved role for human Nup98 in altering chromatin structure and promoting epigenetic transcriptional memory. PLoS Biol 11(3):e1001524. https://doi.org/10.1371/journal.pbio.1001524, DOI: 10.1371/journal.pbio.1001524</label>
          <listPosition>32</listPosition>
          <doi>10.1371/journal.pbio.1001524</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316314</mtid>
          <link>/api/reference/50316314</link>
          <label>33. You T, Ingram P, Jacobsen MD, Cook E, McDonagh A, Thorne T, Lenardon MD, de Moura AP, Romano MC, Thiel M, Stumpf M, Gow NA, Haynes K, Grebogi C, Stark J, Brown AJ (2012) A systems biology analysis of long and short-term memories of osmotic stress adaptation in fungi. BMC Res Notes 5:258. https://doi.org/10.1186/1756-0500-5-258, DOI: 10.1186/1756-0500-5-258</label>
          <listPosition>33</listPosition>
          <doi>10.1186/1756-0500-5-258</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316315</mtid>
          <link>/api/reference/50316315</link>
          <label>34. Mitra T, Menon SN, Sinha S (2018) Emergent memory in cell signaling: Persistent adaptive dynamics in cascades can arise from the diversity of relaxation time-scales. Sci Rep 8(1):13230. https://doi.org/10.1038/s41598-018-31626-9, DOI: 10.1038/s41598-018-31626-9</label>
          <listPosition>34</listPosition>
          <doi>10.1038/s41598-018-31626-9</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316316</mtid>
          <link>/api/reference/50316316</link>
          <label>35. Côte P, Sulea T, Dignard D, Wu C, Whiteway M (2011) Evolutionary reshaping of fungal mating pathway scaffold proteins. MBio 2(1):e00230-e310. https://doi.org/10.1128/mBio.00230-10, DOI: 10.1128/mBio.00230-10</label>
          <listPosition>35</listPosition>
          <doi>10.1128/mBio.00230-10</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316317</mtid>
          <link>/api/reference/50316317</link>
          <label>36. Klímová Z, Bráborec V, Maninová M, Čáslavský J, Weber MJ, Vomastek T (2016) Symmetry breaking in spreading RAT2 fibroblasts requires the MAPK/ERK pathway scaffold RACK1 that integrates FAK, p190A-RhoGAP and ERK2 signaling. Biochim Biophys Acta 1863:2189–2200. https://doi.org/10.1016/j.bbamcr.2016.05.013, DOI: 10.1016/j.bbamcr.2016.05.013</label>
          <listPosition>36</listPosition>
          <doi>10.1016/j.bbamcr.2016.05.013</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316318</mtid>
          <link>/api/reference/50316318</link>
          <label>37. Lee PC, Beyrakhova K, Xu C, Boniecki MT, Lee MH, Onu CJ, Grishin AM, Machner MP, Cygler M (2020) The Legionella kinase LegK7 exploits the Hippo pathway scaffold protein MOB1A for allostery and substrate phosphorylation. Proc Natl Acad Sci U S A 117(25):14433–14443. https://doi.org/10.1073/pnas.2000497117, DOI: 10.1073/pnas.2000497117</label>
          <listPosition>37</listPosition>
          <doi>10.1073/pnas.2000497117</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316319</mtid>
          <link>/api/reference/50316319</link>
          <label>38. Kant S, Standen CL, Morel C, Jung DY, Kim JK, Swat W, Flavell RA, Davis RJ (2017) A protein scaffold coordinates SRC-mediated JNK activation in response to metabolic stress. Cell Rep 20(12):2775–2783. https://doi.org/10.1016/j.celrep.2017.08.025, DOI: 10.1016/j.celrep.2017.08.025</label>
          <listPosition>38</listPosition>
          <doi>10.1016/j.celrep.2017.08.025</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316320</mtid>
          <link>/api/reference/50316320</link>
          <label>39. Zhang J, Zhou T (2019) Markovian approaches to modeling intracellular reaction processes with molecular memory. Proc Natl Acad Sci U S A 116(47):23542–23550. https://doi.org/10.1073/pnas.1913926116, DOI: 10.1073/pnas.1913926116</label>
          <listPosition>39</listPosition>
          <doi>10.1073/pnas.1913926116</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316321</mtid>
          <link>/api/reference/50316321</link>
          <label>40. Wang Y, Wang Y, Wu Y, Suo Y, Guo H, Yu Y, Yin R, Xi R, Wu J, Hua N, Zhang Y, Zhang S, Jin Z, He L, Ma G (2023) Using the inner membrane of Escherichia coli as a scaffold to anchor enzymes for metabolic flux enhancement. Eng Life Sci 23(2):e2200034. https://doi.org/10.1002/elsc.202200034, DOI: 10.1002/elsc.202200034</label>
          <listPosition>40</listPosition>
          <doi>10.1002/elsc.202200034</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316322</mtid>
          <link>/api/reference/50316322</link>
          <label>41. Kennedy NW, Mills CE, Nichols TM, Abrahamson CH, Tullman-Ercek D (2021) Bacterial microcompartments: tiny organelles with big potential. Curr Opin Microbiol 63:36–42. https://doi.org/10.1016/j.mib.2021.05.010, DOI: 10.1016/j.mib.2021.05.010</label>
          <listPosition>41</listPosition>
          <doi>10.1016/j.mib.2021.05.010</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316323</mtid>
          <link>/api/reference/50316323</link>
          <label>42. Aon MA, Cortassa S (2015) Function of metabolic and organelle networks in crowded and organized media. Front Physiol 5:523. https://doi.org/10.3389/2Ffphys.2014.00523, DOI: 10.3389/2Ffphys.2014.00523</label>
          <listPosition>42</listPosition>
          <doi>10.3389/2Ffphys.2014.00523</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316324</mtid>
          <link>/api/reference/50316324</link>
          <label>43. Srere PA (1985) The metabolon. Trends Biochem Sci 10(3):109–110, DOI: 10.1016/0968-0004(85)90266-X</label>
          <listPosition>43</listPosition>
          <doi>10.1016/0968-0004(85)90266-X</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316325</mtid>
          <link>/api/reference/50316325</link>
          <label>44. Tian T, Fan J, Elf SE (2021) Metabolon: a novel cellular structure that regulates specific metabolic pathways. Cancer Commun (Lond) 41(6):439–441. https://doi.org/10.1002/cac2.12154, DOI: 10.1002/cac2.12154</label>
          <listPosition>44</listPosition>
          <doi>10.1002/cac2.12154</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316326</mtid>
          <link>/api/reference/50316326</link>
          <label>45. Zhu Y, Jin L, Shi R, Li J, Wang Y, Zhang L, Liang CZ, Narayana VK, De Souza DP, Thorne RF, Zhang LR, Zhang XD, Wu M (2022) The long noncoding RNA glycoLINC assembles a lower glycolytic metabolon to promote glycolysis. Mol Cell 82(3):542–554. https://doi.org/10.1016/j.molcel.2021.11.017, DOI: 10.1016/j.molcel.2021.11.017</label>
          <listPosition>45</listPosition>
          <doi>10.1016/j.molcel.2021.11.017</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316327</mtid>
          <link>/api/reference/50316327</link>
          <label>46. Patrick M, Gu Z, Zhang G, Wynn RM, Kaphle P, Cao H, Vu H, Cai F, Gao X, Zhang Y, Chen M, Ni M, Chuang DT, DeBerardinis RJ, Xu J (2022) Metabolon formation regulates branched-chain amino acid oxidation and homeostasis. Nat Metab 4(12):1775–1791. https://doi.org/10.1038/s42255-022-00689-4, DOI: 10.1038/s42255-022-00689-4</label>
          <listPosition>46</listPosition>
          <doi>10.1038/s42255-022-00689-4</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316328</mtid>
          <link>/api/reference/50316328</link>
          <label>47. Pedley AM, Pareek V, Benkovic SJ (2022) The purinosome: a case study for a mammalian metabolon. Annu Rev Biochem 91:89–106. https://doi.org/10.1146/annurev-biochem-032620-105728, DOI: 10.1146/annurev-biochem-032620-105728</label>
          <listPosition>47</listPosition>
          <doi>10.1146/annurev-biochem-032620-105728</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316329</mtid>
          <link>/api/reference/50316329</link>
          <label>48. Hebb DO (1949) The Organization of Behavior. Wiley &amp; Sons, New York</label>
          <listPosition>48</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316330</mtid>
          <link>/api/reference/50316330</link>
          <label>49. Oja E (1982) Simplified neuron model as a principal component analyzer. J Mathem Biol 15(3):267–273. https://doi.org/10.1007/2FBF00275687, DOI: 10.1007/2FBF00275687</label>
          <listPosition>49</listPosition>
          <doi>10.1007/2FBF00275687</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316331</mtid>
          <link>/api/reference/50316331</link>
          <label>50. Acar M, Becskei A, van Oudenaarden A (2005) Enhancement of cellular memory by reducing stochastic transitions. Nature 435(7039):228–232. https://doi.org/10.1038/nature03524, DOI: 10.1038/nature03524</label>
          <listPosition>50</listPosition>
          <doi>10.1038/nature03524</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316332</mtid>
          <link>/api/reference/50316332</link>
          <label>51. Liu N, Ding Y, Fromm M, Avramova Z (2014) Different gene-specific mechanisms determine the “revised-response” memory transcription patterns of a subset of A. thaliana dehydration stress responding genes. Nucleic Acids Res 42(9):5556–5566. https://doi.org/10.1093/nar/gku220, DOI: 10.1093/nar/gku220</label>
          <listPosition>51</listPosition>
          <doi>10.1093/nar/gku220</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316333</mtid>
          <link>/api/reference/50316333</link>
          <label>52. Biswas S, Clawson W, Levin M (2023) Learning in transcriptional network models: computational discovery of pathway-level memory and effective interventions. Int J Mol Sci 24(1):285. https://doi.org/10.3390/ijms24010285, DOI: 10.3390/ijms24010285</label>
          <listPosition>52</listPosition>
          <doi>10.3390/ijms24010285</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316334</mtid>
          <link>/api/reference/50316334</link>
          <label>53. Jacob F, Monod J (1961) On the regulation of gene activity. Cold Spring Harb Symp Quant Biol 26:389–401. https://doi.org/10.1101/SQB.1961.026.01.024, DOI: 10.1101/SQB.1961.026.01.024</label>
          <listPosition>53</listPosition>
          <doi>10.1101/SQB.1961.026.01.024</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316335</mtid>
          <link>/api/reference/50316335</link>
          <label>54. Burrill DR, Silver PA (2010) Making cellular memories. Cell 140(1):13–18. https://doi.org/10.1016/j.cell.2009.12.034, DOI: 10.1016/j.cell.2009.12.034</label>
          <listPosition>54</listPosition>
          <doi>10.1016/j.cell.2009.12.034</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316336</mtid>
          <link>/api/reference/50316336</link>
          <label>55. Koseska A, Bastiaens PI (2017) Cell signaling as a cognitive process. EMBO J 36(5):568–582. https://doi.org/10.15252/embj.201695383, DOI: 10.15252/embj.201695383</label>
          <listPosition>55</listPosition>
          <doi>10.15252/embj.201695383</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316337</mtid>
          <link>/api/reference/50316337</link>
          <label>56. Hadziselimovic N, Vukojevic V, Peter F, Milnik A, Fastenrath M, Fenyves BG, Hieber P, Demougin P, Vogler C, de Quervain DJ, Papassotiropoulos A, Stetak A (2014) Forgetting is regulated via Musashi-mediated translational control of the Arp2/3 complex. Cell 156(6):1153–1166. https://doi.org/10.1016/j.cell.2014.01.054, DOI: 10.1016/j.cell.2014.01.054</label>
          <listPosition>56</listPosition>
          <doi>10.1016/j.cell.2014.01.054</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316338</mtid>
          <link>/api/reference/50316338</link>
          <label>57. Wang J, Zhang K, Wang E (2008) Robustness and dissipation of mitogen-activated protein kinases signal transduction network: underlying funneled landscape against stochastic fluctuations. J Chem Phys 129(13):135101. https://doi.org/10.1063/1.2985621, DOI: 10.1063/1.2985621</label>
          <listPosition>57</listPosition>
          <doi>10.1063/1.2985621</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316339</mtid>
          <link>/api/reference/50316339</link>
          <label>58. Hore TA, von Meyenn F, Ravichandran M, Bachman M, Ficz G, Oxley D, Santos F, Balasubramanian S, Jurkowski TP, Reik W (2016) Retinol and ascorbate drive erasure of epigenetic memory and enhance reprogramming to naïve pluripotency by complementary mechanisms. Proc Natl Acad Sci U S A 113(43):12202–12207. https://doi.org/10.1073/pnas.1608679113, DOI: 10.1073/pnas.1608679113</label>
          <listPosition>58</listPosition>
          <doi>10.1073/pnas.1608679113</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316340</mtid>
          <link>/api/reference/50316340</link>
          <label>59. Yu Y, Yarrington RM, Chuong EB, Elde NC, Stillman DJ (2016) Disruption of promoter memory by synthesis of a long noncoding RNA. Proc Natl Acad Sci U S A 113(34):9575–9580. https://doi.org/10.1073/pnas.1601793113, DOI: 10.1073/pnas.1601793113</label>
          <listPosition>59</listPosition>
          <doi>10.1073/pnas.1601793113</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316341</mtid>
          <link>/api/reference/50316341</link>
          <label>60. Tompa P, Csermely P (2004) The role of structural disorder in the function of RNA and protein chaperones. FASEB J 18(11):1169–1175. https://doi.org/10.1096/fj.04-1584rev, DOI: 10.1096/fj.04-1584rev</label>
          <listPosition>60</listPosition>
          <doi>10.1096/fj.04-1584rev</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316342</mtid>
          <link>/api/reference/50316342</link>
          <label>61. Ali A, Pardo JM, Yun DJ (2020) Desensitization of ABA-signaling: the swing from activation to degradation. Front Plant Sci 11:379. https://doi.org/10.3389/fpls.2020.00379, DOI: 10.3389/fpls.2020.00379</label>
          <listPosition>61</listPosition>
          <doi>10.3389/fpls.2020.00379</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316343</mtid>
          <link>/api/reference/50316343</link>
          <label>62. Hepler JR, Earp HS, Harden TK (1988) Long-term phorbol ester treatment down-regulates protein kinase C and sensitizes the phosphoinositide signaling pathway to hormone and growth factor stimulation. evidence for a role of protein kinase C in agonist-induced desensitization. J Biol Chem 263(16):7610–7619, DOI: 10.1016/S0021-9258(18)68542-4</label>
          <listPosition>62</listPosition>
          <doi>10.1016/S0021-9258(18)68542-4</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316344</mtid>
          <link>/api/reference/50316344</link>
          <label>63. Premont RT, Gainetdinov RR (2007) Physiological roles of G protein-coupled receptor kinases and arrestins. Annu Rev Physiol 69:511–534. https://doi.org/10.1146/annurev.physiol.69.022405, DOI: 10.1146/annurev.physiol.69.022405</label>
          <listPosition>63</listPosition>
          <doi>10.1146/annurev.physiol.69.022405</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316345</mtid>
          <link>/api/reference/50316345</link>
          <label>64. Moore CA, Milano SK, Benovic JL (2007) Regulation of receptor trafficking by GRKs and arrestins. Annu Rev Physiol 69:451–482. https://doi.org/10.1146/annurev.physiol.69.022405.154712, DOI: 10.1146/annurev.physiol.69.022405.154712</label>
          <listPosition>64</listPosition>
          <doi>10.1146/annurev.physiol.69.022405.154712</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316346</mtid>
          <link>/api/reference/50316346</link>
          <label>65. Rajagopal S, Shenoy SK (2018) GPCR desensitization: Acute and prolonged phases. Cell Signal 41:9–16. https://doi.org/10.1016/j.cellsig.2017.01.024, DOI: 10.1016/j.cellsig.2017.01.024</label>
          <listPosition>65</listPosition>
          <doi>10.1016/j.cellsig.2017.01.024</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316347</mtid>
          <link>/api/reference/50316347</link>
          <label>66. Chang HY, Klein RM, Kunos G (1982) Selective desensitization of cardiac beta adrenoceptors by prolonged in vivo infusion of catecholamines in rats. J Pharmacol Exp Ther 221(3):784–789</label>
          <listPosition>66</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316348</mtid>
          <link>/api/reference/50316348</link>
          <label>67. Lee HT, Thompson CI, Hernandez A, Lewy JL, Belloni FL (1993) Cardiac desensitization to adenosine analogues after prolonged R-PIA infusion in vivo. Am J Physiol 265(6 Pt 2):H1916–H1927. https://doi.org/10.1152/ajpheart.1993.265.6.H1916, DOI: 10.1152/ajpheart.1993.265.6.H1916</label>
          <listPosition>67</listPosition>
          <doi>10.1152/ajpheart.1993.265.6.H1916</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316349</mtid>
          <link>/api/reference/50316349</link>
          <label>68. Perlini S, Khoury EP, Norton GR, Chung ES, Fenton RA, Dobson JG Jr, Meyer TE (1998) Adenosine mediates sustained adrenergic desensitization in the rat heart via activation of protein kinase C. Circ Res 83(7):761–771. https://doi.org/10.1161/01.res.83.7.761, DOI: 10.1161/01.res.83.7.761</label>
          <listPosition>68</listPosition>
          <doi>10.1161/01.res.83.7.761</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316350</mtid>
          <link>/api/reference/50316350</link>
          <label>69. Purrello F, Rabuazzo AM, Anello M, Patanè G (1996) Effects of prolonged glucose stimulation on pancreatic beta cells: from increased sensitivity to desensitization. Acta Diabetol 33(4):253–256. https://doi.org/10.1007/BF00571559, DOI: 10.1007/BF00571559</label>
          <listPosition>69</listPosition>
          <doi>10.1007/BF00571559</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316351</mtid>
          <link>/api/reference/50316351</link>
          <label>70. Karlsson FA, Van Obberghen E, Grunfeld C, Kahn CR (1979) Desensitization of the insulin receptor at an early postreceptor step by prolonged exposure to antireceptor antibody. Proc Natl Acad Sci U S A 76(2):809–813. https://doi.org/10.1073/pnas.76.2.809, DOI: 10.1073/pnas.76.2.809</label>
          <listPosition>70</listPosition>
          <doi>10.1073/pnas.76.2.809</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316352</mtid>
          <link>/api/reference/50316352</link>
          <label>71. Korcsmáros T, Farkas IJ, Szalay MS, Rovó P, Fazekas D, Spiró Z, Böde C, Lenti K, Vellai T, Csermely P (2010) Uniformly curated signaling pathways reveal tissue-specific cross-talks and support drug target discovery. Bioinformatics 26(16):2042–2050. https://doi.org/10.1093/bioinformatics/btq310, DOI: 10.1093/bioinformatics/btq310</label>
          <listPosition>71</listPosition>
          <doi>10.1093/bioinformatics/btq310</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316353</mtid>
          <link>/api/reference/50316353</link>
          <label>72. Dalle S, Imamura T, Rose DW, Worrall DS, Ugi S, Hupfeld CJ, Olefsky JM (2002) Insulin induces heterologous desensitization of G-protein-coupled receptor and insulin-like growth factor I signaling by downregulating beta-arrestin-1. Mol Cell Biol 22(17):6272–6285. https://doi.org/10.1128/MCB.22.17.6272-6285.2002, DOI: 10.1128/MCB.22.17.6272-6285.2002</label>
          <listPosition>72</listPosition>
          <doi>10.1128/MCB.22.17.6272-6285.2002</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316354</mtid>
          <link>/api/reference/50316354</link>
          <label>73. Ishibashi KI, Imamura T, Sharma PM, Huang J, Ugi S, Olefsky JM (2001) Chronic endothelin-1 treatment leads to heterologous desensitization of insulin signaling in 3T3-L1 adipocytes. J Clin Invest 107(9):1193–1202. https://doi.org/10.1172/JCI11753, DOI: 10.1172/JCI11753</label>
          <listPosition>73</listPosition>
          <doi>10.1172/JCI11753</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316355</mtid>
          <link>/api/reference/50316355</link>
          <label>74. Torda T, Yamaguchi I, Hirata F, Kopin IJ, Axelrod J (1981) Quinacrine-blocked desensitization of adrenoceptors after immobilization stress or repeated injection of isoproterenol in rats. J Pharmacol Exp Ther 216(2):334–338</label>
          <listPosition>74</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316356</mtid>
          <link>/api/reference/50316356</link>
          <label>75. De Blasi A, Fratelli M, Wielosz M, Lipartiti M (1987) Regulation of beta adrenergic receptors on rat mononuclear leukocytes by stress: receptor redistribution and down-regulation are altered with aging. J Pharmacol Exp Ther 240(1):228–233</label>
          <listPosition>75</listPosition>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316357</mtid>
          <link>/api/reference/50316357</link>
          <label>76. Liu J, Sun F, Wang Y, Yang W, Xiao H, Zhang Y, Lu R, Zhu H, Zhuang Y, Pan Z, Wang Z, Du Z, Lu Y (2017) Suppression of microRNA-16 protects against acute myocardial infarction by reversing beta2-adrenergic receptor down-regulation in rats. Oncotarget 8(12):20122–20132. https://doi.org/10.18632/oncotarget.15391, DOI: 10.18632/oncotarget.15391</label>
          <listPosition>76</listPosition>
          <doi>10.18632/oncotarget.15391</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316358</mtid>
          <link>/api/reference/50316358</link>
          <label>77. Adachi S, Yasuda I, Nakashima M, Yamauchi T, Kawaguchi J, Shimizu M, Itani M, Nakamura M, Nishii Y, Yoshioka T, Hirose Y, Okano Y, Moriwaki H, Kozawa O (2011) Ultraviolet irradiation can induce evasion of colon cancer cells from stimulation of epidermal growth factor. J Biol Chem 286(29):26178–26187. https://doi.org/10.1074/jbc.M111.240630, DOI: 10.1074/jbc.M111.240630</label>
          <listPosition>77</listPosition>
          <doi>10.1074/jbc.M111.240630</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316359</mtid>
          <link>/api/reference/50316359</link>
          <label>78. Rosette C, Karin M (1996) Ultraviolet light and osmotic stress: activation of the JNK cascade through multiple growth factor and cytokine receptors. Science 274(5290):1194–1197. https://doi.org/10.1126/science.274.5290, DOI: 10.1126/science.274.5290</label>
          <listPosition>78</listPosition>
          <doi>10.1126/science.274.5290</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316360</mtid>
          <link>/api/reference/50316360</link>
          <label>79. Tang X, Shen H, Chen J, Wang X, Zhang Y, Chen LL, Rukachaisirikul V, Jiang HL, Shen X (2011) Activating transcription factor 6 protects insulin receptor from ER stress-stimulated desensitization via p42/44 ERK pathway. Acta Pharmacol Sin 32(9):1138–1147. https://doi.org/10.1038/aps.2011.75, DOI: 10.1038/aps.2011.75</label>
          <listPosition>79</listPosition>
          <doi>10.1038/aps.2011.75</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316361</mtid>
          <link>/api/reference/50316361</link>
          <label>80. Zhou L, Zhang J, Fang Q, Liu M, Liu X, Jia W, Dong LQ, Liu F (2009) Autophagy-mediated insulin receptor down-regulation contributes to endoplasmic reticulum stress-induced insulin resistance. Mol Pharmacol 76(3):596–603. https://doi.org/10.1124/mol.109.057067, DOI: 10.1124/mol.109.057067</label>
          <listPosition>80</listPosition>
          <doi>10.1124/mol.109.057067</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316362</mtid>
          <link>/api/reference/50316362</link>
          <label>81. Li N, Xiao Y, Wang H, Zhong Y, Yang H, Huang K (2023) Insulin desensitization and cell senescence induced by heat stress in pig testicular cell model. Anim Biotechnol 19:1–10. https://doi.org/10.1080/10495398.2023.2214246, DOI: 10.1080/10495398.2023.2214246</label>
          <listPosition>81</listPosition>
          <doi>10.1080/10495398.2023.2214246</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316363</mtid>
          <link>/api/reference/50316363</link>
          <label>82. Holliday R (1997) Understanding ageing. Philos Trans R Soc Lond B Biol Sci 352(1363):1793–1797. https://doi.org/10.1098/rstb.1997.0163, DOI: 10.1098/rstb.1997.0163</label>
          <listPosition>82</listPosition>
          <doi>10.1098/rstb.1997.0163</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316364</mtid>
          <link>/api/reference/50316364</link>
          <label>83. Kirkwood TB, Austad SN (2000) Why do we age? Nature 408(6809):233–238. https://doi.org/10.1038/35041682, DOI: 10.1038/35041682</label>
          <listPosition>83</listPosition>
          <doi>10.1038/35041682</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316365</mtid>
          <link>/api/reference/50316365</link>
          <label>84. Sőti C, Csermely P (2007) Aging cellular networks: chaperones as major participants. Exp Gerontol 42(1–2):113–119. https://doi.org/10.1016/j.exger.2006.05.017, DOI: 10.1016/j.exger.2006.05.017</label>
          <listPosition>84</listPosition>
          <doi>10.1016/j.exger.2006.05.017</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316366</mtid>
          <link>/api/reference/50316366</link>
          <label>85. Ferrucci L, Wilson DM 3rd, Donegà S, Gorospe M (2022) The energy-splicing resilience axis hypothesis of aging. Nat Aging 2(3):182–185. https://doi.org/10.1038/s43587-022-00189-w, DOI: 10.1038/s43587-022-00189-w</label>
          <listPosition>85</listPosition>
          <doi>10.1038/s43587-022-00189-w</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316367</mtid>
          <link>/api/reference/50316367</link>
          <label>86. Walker KA, Basisty N, Wilson DM 3rd, Ferrucci L (2022) Connecting aging biology and inflammation in the omics era. J Clin Invest 132(14):e158448. https://doi.org/10.1172/JCI158448, DOI: 10.1172/JCI158448</label>
          <listPosition>86</listPosition>
          <doi>10.1172/JCI158448</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316368</mtid>
          <link>/api/reference/50316368</link>
          <label>87. Jung FF, Kennefick TM, Ingelfinger JR, Vora JP, Anderson S (1995) Down-regulation of the intrarenal renin-angiotensin system in the aging rat. J Am Soc Nephrol 5(8):1573–1580. https://doi.org/10.1681/ASN.V581573, DOI: 10.1681/ASN.V581573</label>
          <listPosition>87</listPosition>
          <doi>10.1681/ASN.V581573</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316369</mtid>
          <link>/api/reference/50316369</link>
          <label>88. Zeng Y, Wang PH, Zhang M, Du JR (2016) Aging-related renal injury and inflammation are associated with downregulation of Klotho and induction of RIG-I/NF-κB signaling pathway in senescence-accelerated mice. Aging Clin Exp Res 28(1):69–76. https://doi.org/10.1007/s40520-015-0371-y, DOI: 10.1007/s40520-015-0371-y</label>
          <listPosition>88</listPosition>
          <doi>10.1007/s40520-015-0371-y</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316370</mtid>
          <link>/api/reference/50316370</link>
          <label>89. Iemitsu M, Maeda S, Jesmin S, Otsuki T, Miyauchi T (2006) Exercise training improves aging-induced downregulation of VEGF angiogenic signaling cascade in hearts. Am J Physiol Heart Circ Physiol 291(3):H1290–H1298. https://doi.org/10.1152/ajpheart.00820.2005, DOI: 10.1152/ajpheart.00820.2005</label>
          <listPosition>89</listPosition>
          <doi>10.1152/ajpheart.00820.2005</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316371</mtid>
          <link>/api/reference/50316371</link>
          <label>90. Xiong X, Wang X, Lu Y, Wang E, Zhang Z, Yang J, Zhang H, Li X (2014) Hepatic steatosis exacerbated by endoplasmic reticulum stress-mediated downregulation of FXR in aging mice. J Hepatol 60(4):847–854. https://doi.org/10.1016/j.jhep.2013.12.003, DOI: 10.1016/j.jhep.2013.12.003</label>
          <listPosition>90</listPosition>
          <doi>10.1016/j.jhep.2013.12.003</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316372</mtid>
          <link>/api/reference/50316372</link>
          <label>91. Koohy H, Bolland DJ, Matheson LS, Schoenfelder S, Stellato C, Dimond A, Várnai C, Chovanec P, Chessa T, Denizot J, Manzano Garcia R, Wingett SW, Freire-Pritchett P, Nagano T, Hawkins P, Stephens L, Elderkin S, Spivakov M, Fraser P, Corcoran AE, Varga-Weisz PD (2018) Genome organization and chromatin analysis identify transcriptional downregulation of insulin-like growth factor signaling as a hallmark of aging in developing B cells. Genome Biol 19(1):126. https://doi.org/10.1186/s13059-018-1489-y, DOI: 10.1186/s13059-018-1489-y</label>
          <listPosition>91</listPosition>
          <doi>10.1186/s13059-018-1489-y</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316373</mtid>
          <link>/api/reference/50316373</link>
          <label>92. Grunfeld C, Jones DS, Shigenaga JK (1985) Autoantibodies against the insulin receptor dissociation of the acute effects of the antibodies from the desensitization seen with prolonged exposure. Diabetes 34(3):205–211. https://doi.org/10.2337/diab.34.3.205, DOI: 10.2337/diab.34.3.205</label>
          <listPosition>92</listPosition>
          <doi>10.2337/diab.34.3.205</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316374</mtid>
          <link>/api/reference/50316374</link>
          <label>93. Rubner J, Schulten K (1990) Development of feature detectors by self-organization. Biol Cybern 62:193–199. https://doi.org/10.1007/BF00198094, DOI: 10.1007/BF00198094</label>
          <listPosition>93</listPosition>
          <doi>10.1007/BF00198094</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316375</mtid>
          <link>/api/reference/50316375</link>
          <label>94. Földiák P (1990) Forming sparse representations by local anti-Hebbian learning. Biol Cybern 64:165–170. https://doi.org/10.1007/BF02331346, DOI: 10.1007/BF02331346</label>
          <listPosition>94</listPosition>
          <doi>10.1007/BF02331346</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316376</mtid>
          <link>/api/reference/50316376</link>
          <label>95. Roberts PD, Leen TK (2010) Anti-hebbian spike-timing-dependent plasticity and adaptive sensory processing. Front Comput Neurosci 4:156. https://doi.org/10.3389/fncom.2010.00156, DOI: 10.3389/fncom.2010.00156</label>
          <listPosition>95</listPosition>
          <doi>10.3389/fncom.2010.00156</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316377</mtid>
          <link>/api/reference/50316377</link>
          <label>96. Adler M, Alon U (2018) Fold-change detection in biological systems. Curr Opin Syst Biol 8:81–89. https://doi.org/10.1016/j.coisb.2017.12.005, DOI: 10.1016/j.coisb.2017.12.005</label>
          <listPosition>96</listPosition>
          <doi>10.1016/j.coisb.2017.12.005</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316378</mtid>
          <link>/api/reference/50316378</link>
          <label>97. Bromberg KD, Ma’ayan A, Neves SR, Iyengar R (2008) Design logic of a cannabinoid receptor signaling network that triggers neurite outgrowth. Science 320:903–909. https://doi.org/10.1126/science.1152662, DOI: 10.1126/science.1152662</label>
          <listPosition>97</listPosition>
          <doi>10.1126/science.1152662</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316379</mtid>
          <link>/api/reference/50316379</link>
          <label>98. Oeckinghaus A, Hayden MS, Ghosh S (2011) Crosstalk in NF-κB signaling pathways. Nat Immunol 12(8):695–708. https://doi.org/10.1038/ni.2065, DOI: 10.1038/ni.2065</label>
          <listPosition>98</listPosition>
          <doi>10.1038/ni.2065</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316380</mtid>
          <link>/api/reference/50316380</link>
          <label>99. Goentoro L, Shoval O, Kirschner MW, Alon U (2009) The incoherent feedforward loop can provide fold-change detection in gene regulation. Mol Cell 36(5):894–899. https://doi.org/10.1016/j.molcel.2009.11.018, DOI: 10.1016/j.molcel.2009.11.018</label>
          <listPosition>99</listPosition>
          <doi>10.1016/j.molcel.2009.11.018</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316381</mtid>
          <link>/api/reference/50316381</link>
          <label>100. Lee RE, Walker SR, Savery K, Frank DA, Gaudet S (2014) Fold change of nuclear NF-κB determines TNF-induced transcription in single cells. Mol Cell 53(6):867–879. https://doi.org/10.1016/j.molcel.2014.01.026, DOI: 10.1016/j.molcel.2014.01.026</label>
          <listPosition>100</listPosition>
          <doi>10.1016/j.molcel.2014.01.026</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316382</mtid>
          <link>/api/reference/50316382</link>
          <label>101. Alon U (2007) Network motifs: theory and experimental approaches. Nat Rev Genet 8(6):450–461. https://doi.org/10.1038/nrg2102, DOI: 10.1038/nrg2102</label>
          <listPosition>101</listPosition>
          <doi>10.1038/nrg2102</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316383</mtid>
          <link>/api/reference/50316383</link>
          <label>102. Mangan S, Itzkovitz S, Zaslaver A, Alon U (2006) The incoherent feed-forward loop accelerates the response-time of the gal system of Escherichia coli. J Mol Biol 356(5):1073–1081. https://doi.org/10.1016/j.jmb.2005.12.003, DOI: 10.1016/j.jmb.2005.12.003</label>
          <listPosition>102</listPosition>
          <doi>10.1016/j.jmb.2005.12.003</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316384</mtid>
          <link>/api/reference/50316384</link>
          <label>103. Stanton BZ, Chory EJ, Crabtree GR (2018) Chemically induced proximity in biology and medicine. Science 359(6380):1117. https://doi.org/10.1126/science.aao5902, DOI: 10.1126/science.aao5902</label>
          <listPosition>103</listPosition>
          <doi>10.1126/science.aao5902</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316385</mtid>
          <link>/api/reference/50316385</link>
          <label>104. Peng Y, Liu J, Inuzuka H, Wei W (2023) Targeted protein posttranslational modifications by chemically induced proximity for cancer therapy. J Biol Chem 299(4):104572. https://doi.org/10.1016/j.jbc.2023, DOI: 10.1016/j.jbc.2023</label>
          <listPosition>104</listPosition>
          <doi>10.1016/j.jbc.2023</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316386</mtid>
          <link>/api/reference/50316386</link>
          <label>105. Adachi S, Yasuda I, Nakashima M, Yamauchi T, Yamauchi J, Natsume H, Moriwaki H, Kozawa O (2010) HSP90 inhibitors induce desensitization of EGF receptor via p38 MAPK-mediated phosphorylation at Ser1046/1047 in human pancreatic cancer cells. Oncol Rep 23(6):1709–1714. https://doi.org/10.3892/or_00000815, DOI: 10.3892/or_00000815</label>
          <listPosition>105</listPosition>
          <doi>10.3892/or_00000815</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316387</mtid>
          <link>/api/reference/50316387</link>
          <label>106. Shi M, Yang Z, Hu M, Liu D, Hu Y, Qian L, Zhang W, Chen H, Guo L, Yu M, Song L, Ma Y, Guo N (2013) Catecholamine-Induced β2-adrenergic receptor activation mediates desensitization of gastric cancer cells to trastuzumab by upregulating MUC4 expression. J Immunol 190(11):5600–5608. https://doi.org/10.4049/jimmunol.1202364, DOI: 10.4049/jimmunol.1202364</label>
          <listPosition>106</listPosition>
          <doi>10.4049/jimmunol.1202364</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316388</mtid>
          <link>/api/reference/50316388</link>
          <label>107. Vega A, Jimenez-Rodriguez TW, Barranco R, Bartra J, Diéguez MC, Doña I, Fernández-Rivas M, Gandolfo-Cano M, Gastaminza-Lasarte G, González-Mancebo E, de la Hoz CB, Sánchez-Morillas L, Torres MJ, Berges-Gimeno MP, Muñoz-Cano R (2021) Hypersensitivity reactions to cancer chemotherapy: Practical recommendations of ARADyAL for diagnosis and desensitization. J Investig Allergol Clin Immunol 31(5):364–384. https://doi.org/10.18176/jiaci.0712, DOI: 10.18176/jiaci.0712</label>
          <listPosition>107</listPosition>
          <doi>10.18176/jiaci.0712</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316389</mtid>
          <link>/api/reference/50316389</link>
          <label>108. Alen Coutinho I, Costa Sousa F, Cunha F, Frutuoso C, Ribeiro C, Loureiro C, Águas F, Todo BA (2022) Key elements in hypersensitivity reactions to chemotherapy: experience with rapid drug desensitization in gynaecological cancer in a Tertiary Hospital. Eur Ann Allergy Clin Immunol 54(6):265–276. https://doi.org/10.23822/EurAnnACI.1764-1489.207, DOI: 10.23822/EurAnnACI.1764-1489.207</label>
          <listPosition>108</listPosition>
          <doi>10.23822/EurAnnACI.1764-1489.207</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316390</mtid>
          <link>/api/reference/50316390</link>
          <label>109. Yang BC, Castells MC (2022) The who, what, where, when, why, and how of drug desensitization. Immunol Allergy Clin North Am 42(2):403–420. https://doi.org/10.1016/j.iac.2021.12.004, DOI: 10.1016/j.iac.2021.12.004</label>
          <listPosition>109</listPosition>
          <doi>10.1016/j.iac.2021.12.004</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316391</mtid>
          <link>/api/reference/50316391</link>
          <label>110. Cernadas JR, Brockow K, Romano A, Aberer W, Torres MJ, Bircher A, Campi P, Sanz ML, Castells M, Demoly P, Pichler WJ (2010) European network of drug allergy and the EAACI interest group on drug hypersensitivity. general considerations on rapid desensitization for drug hypersensitivity - a consensus statement. Allergy 65(11):1357–1366. https://doi.org/10.1111/j.1398-9995.2010.02441.x, DOI: 10.1111/j.1398-9995.2010.02441.x</label>
          <listPosition>110</listPosition>
          <doi>10.1111/j.1398-9995.2010.02441.x</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316392</mtid>
          <link>/api/reference/50316392</link>
          <label>111. Morris HG (1980) Drug-induced desensitization of beta adrenergic receptors. J Allergy Clin Immunol 65(2):83–86. https://doi.org/10.1016/0091-6749(80)90190-6, DOI: 10.1016/0091-6749(80)90190-6</label>
          <listPosition>111</listPosition>
          <doi>10.1016/0091-6749(80)90190-6</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316393</mtid>
          <link>/api/reference/50316393</link>
          <label>112. Ball AJ, Flatt PR, McClenaghan NH (2000) Desensitization of sulphonylurea- and nutrient-induced insulin secretion following prolonged treatment with glibenclamide. Eur J Pharmacol 408(3):327–333. https://doi.org/10.1016/s0014-2999(00)00782-2, DOI: 10.1016/s0014-2999(00)00782-2</label>
          <listPosition>112</listPosition>
          <doi>10.1016/s0014-2999(00)00782-2</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316394</mtid>
          <link>/api/reference/50316394</link>
          <label>113. Irwin N, McKinney JM, Bailey CJ, Flatt PR, McClenaghan NH (2010) Effects of metformin on BRIN-BD11 beta-cell insulin secretory desensitization induced by prolonged exposure to sulphonylureas. Diabetes Obes Metab 12(12):1066–1071. https://doi.org/10.1111/j.1463-1326.2010.01294.x, DOI: 10.1111/j.1463-1326.2010.01294.x</label>
          <listPosition>113</listPosition>
          <doi>10.1111/j.1463-1326.2010.01294.x</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
        <reference>
          <otype>Reference</otype>
          <mtid>50316395</mtid>
          <link>/api/reference/50316395</link>
          <label>114. Tilley DG, Rockman HA (2006) Role of beta-adrenergic receptor signaling and desensitization in heart failure: new concepts and prospects for treatment. Expert Rev Cardiovasc Ther 4(3):417–432. https://doi.org/10.1586/14779072.4.3.417, DOI: 10.1586/14779072.4.3.417</label>
          <listPosition>114</listPosition>
          <doi>10.1586/14779072.4.3.417</doi>
          <published>false</published>
          <snippet>true</snippet>
        </reference>
      </references>
      <link>/api/publication/34644013</link>
      <label>Veres Tamás et al. Cellular forgetting, desensitisation, stress and ageing in signalling networks. When do cells refuse to learn more?. (2024) CELLULAR AND MOLECULAR LIFE SCIENCES 1420-682X 1420-9071 81 1</label><template>&lt;div class=&quot;JournalArticle Publication short-list&quot;&gt; &lt;div class=&quot;authors&quot;&gt; &lt;span class=&quot;author-name&quot; mtid=&quot;10094388&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10094388&quot; target=&quot;_blank&quot;&gt;Veres, Tamás&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10088319&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10088319&quot; target=&quot;_blank&quot;&gt;Kerestély, Márk&lt;sup&gt;*&lt;/sup&gt;&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10072470&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10072470&quot; target=&quot;_blank&quot;&gt;Kovács, Borbála M.&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10063755&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10063755&quot; target=&quot;_blank&quot;&gt;Keresztes, Dávid&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10078255&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10078255&quot; target=&quot;_blank&quot;&gt;Schulc, Klára&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; &gt; Seitz, Erik &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10049810&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10049810&quot; target=&quot;_blank&quot;&gt;Vassy, Zsolt&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;10050101&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10050101&quot; target=&quot;_blank&quot;&gt;Veres, Dániel V.&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; ; &lt;span class=&quot;author-name&quot; mtid=&quot;1035707&quot;&gt; &lt;a href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=1035707&quot; target=&quot;_blank&quot;&gt;Csermely, Peter ✉&lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;author-type&quot;&gt; &lt;/span&gt; &lt;/div &gt;&lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;34644013&quot; mtid=&quot;34644013&quot; target=&quot;_blank&quot;&gt;Cellular forgetting, desensitisation, stress and ageing in signalling networks. When do cells refuse to learn more?&lt;/a&gt;&lt;/div&gt; &lt;div class=&quot;pub-info&quot;&gt; &lt;span class=&quot;journal-title&quot;&gt;CELLULAR AND MOLECULAR LIFE SCIENCES&lt;/span&gt; &lt;span class=&quot;journal-volume&quot;&gt;81&lt;/span&gt; : &lt;span class=&quot;journal-issue&quot;&gt;1&lt;/span&gt; &lt;span class=&quot;page&quot;&gt; Paper: 97 , 13 p. &lt;/span&gt; &lt;span class=&quot;year&quot;&gt;(2024)&lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;pub-end&quot;&gt;&lt;div class=&quot;identifier-list&quot;&gt; &lt;span class=&quot;identifiers&quot;&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;10.1007/s00018-024-05112-7&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.1007/s00018-024-05112-7&quot;&gt; DOI &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;001169720400002&quot; target=&quot;_blank&quot; href=&quot;https://www.webofscience.com/wos/woscc/full-record/001169720400002&quot;&gt; WoS &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;85185513445&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85185513445&quot;&gt; Scopus &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;38372750&quot; target=&quot;_blank&quot; href=&quot;http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=38372750&amp;dopt=Abstract&quot;&gt; PubMed &lt;/a&gt; &lt;/span&gt; &lt;span class=&quot;id identifier oa_NONE&quot; title=&quot; Nincs &quot;&gt; &lt;a style=&quot;color:blue&quot; title=&quot;https://www.scopus.com/pages/publications/85185513445?origin=resultslist&quot; target=&quot;_blank&quot; href=&quot;https://www.scopus.com/pages/publications/85185513445?origin=resultslist&quot;&gt; Egyéb URL &lt;/a&gt; &lt;/span&gt; &lt;/span&gt; &lt;/div&gt; &lt;div class=&quot;short-pub-prop-list&quot;&gt; &lt;span class=&quot;short-pub-mtid&quot;&gt; Közlemény:34644013 &lt;/span&gt; &lt;span class=&quot;status-holder&quot;&gt;&lt;span class=&quot;status-data status-VALIDATED&quot;&gt; Egyeztetett &lt;/span&gt;&lt;/span&gt; &lt;span class=&quot;pub-core&quot;&gt;Forrás Idéző &lt;/span&gt; &lt;span class=&quot;pub-type&quot;&gt;Folyóiratcikk (Összefoglaló cikk ) &lt;/span&gt; &lt;!-- &amp;&amp; !record.category.scientific --&gt; &lt;span class=&quot;pub-category&quot;&gt;Tudományos&lt;/span&gt; &lt;div class=&quot;publication-citation&quot; style=&quot;margin-left: 0.5cm;&quot;&gt; &lt;span title=&quot;Nyilvános idézőközlemények összesen, említések nélkül&quot; class=&quot;citingPub-count&quot;&gt;Nyilvános idéző összesen: 10&lt;/span&gt; | Független: 8 | Függő: 2 | Nem jelölt: 0 | WoS jelölt: 9 | Scopus jelölt:&amp;nbsp;10 | WoS/Scopus jelölt:&amp;nbsp;10 | DOI jelölt:&amp;nbsp;10 &lt;/div&gt; &lt;/div&gt; &lt;/div&gt; &lt;/div&gt;</template><template2>&lt;div class=&quot;JournalArticle Publication long-list&quot;&gt;
&lt;div class=&quot;authors&quot;&gt;
	&lt;img title=&quot;Forrásközlemény&quot; style=&quot;float: left&quot; src=&quot;/frontend/resources/grid/publication-core-icon.png&quot;&gt;
	&lt;img title=&quot;Idézőközlemény&quot; style=&quot;float: left&quot; src=&quot;/frontend/resources/grid/publication-citation-icon.png&quot;&gt;

		&lt;div class=&quot;autype autype0&quot;&gt;				&lt;span class=&quot;author-name&quot; mtid=&quot;10094388&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10094388&quot; target=&quot;_blank&quot;&gt;Veres Tamás
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Veres Tamás&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; Molekuláris biológia&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;10088319&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10088319&quot; target=&quot;_blank&quot;&gt;Kerestély Márk&lt;sup&gt;*&lt;/sup&gt;
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Kerestély Márk&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; Bioinformatika&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;10072470&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10072470&quot; target=&quot;_blank&quot;&gt;Kovács Borbála M.
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Kovács Borbála&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; Biológiai hálózatok&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;10063755&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10063755&quot; target=&quot;_blank&quot;&gt;Keresztes Dávid
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Keresztes Dávid&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; urológia&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;10078255&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10078255&quot; target=&quot;_blank&quot;&gt;Schulc Klára
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Schulc Klára&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; Tumorbiológia&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Klinikum&quot;&gt;K&lt;/span&gt;/Belgyógyászati és Onkológiai Klinika; &lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; &gt;Seitz Erik
    &lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;10049810&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10049810&quot; target=&quot;_blank&quot;&gt;Vassy Zsolt
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Vassy Zsolt&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; informatika&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;10050101&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=10050101&quot; target=&quot;_blank&quot;&gt;Veres Dániel V.
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Veres Dániel&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; Molekuláris orvostudományok&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;
;&amp;nbsp;&amp;nbsp;&amp;nbsp;
							&lt;span class=&quot;author-name&quot; mtid=&quot;1035707&quot;&gt;&lt;a 
																				   href=&quot;/gui2/?type=authors&amp;mode=browse&amp;sel=1035707&quot; target=&quot;_blank&quot;&gt;Csermely Peter ✉
            (&lt;span class=&quot;authorship-author-name&quot;&gt;Csermely Péter&lt;/span&gt;
            &lt;span class=&quot;authorAux-mtmt&quot;&gt; Biokémia&lt;/span&gt;)
			&lt;/a&gt;
    &lt;/span&gt;
&lt;span class=&quot;author-affil&quot;&gt;&lt;span title=&quot;Semmelweis Egyetem&quot;&gt;SE&lt;/span&gt;/&lt;span title=&quot;Általános Orvostudományi Kar&quot;&gt;AOK&lt;/span&gt;/&lt;span title=&quot;Intézet&quot;&gt;I&lt;/span&gt;/&lt;span title=&quot;Biokémiai és Molekuláris Biológiai Intézet&quot;&gt;BMBI&lt;/span&gt;/Molekuláris Biológiai Tanszék&lt;/span&gt;

				    &lt;/div&gt;
&lt;/div&gt;
&lt;div class=&quot;title&quot;&gt;&lt;a href=&quot;/gui2/?mode=browse&amp;params=publication;34644013&quot; target=&quot;_blank&quot;&gt;Cellular forgetting, desensitisation, stress and ageing in signalling networks. When do cells refuse to learn more?&lt;/a&gt;&lt;/div&gt;    &lt;div&gt;		&lt;span class=&quot;journal-title&quot;&gt;CELLULAR AND MOLECULAR LIFE SCIENCES&lt;/span&gt;

        &lt;span class=&quot;journal-issn&quot;&gt;(&lt;a target=&quot;_blank&quot; href=&quot;https://portal.issn.org/resource/ISSN/1420-682X&quot;&gt;1420-682X&lt;/a&gt; &lt;a target=&quot;_blank&quot; href=&quot;https://portal.issn.org/resource/ISSN/1420-9071&quot;&gt;1420-9071&lt;/a&gt;)&lt;/span&gt;:
		&lt;span class=&quot;journal-volume&quot;&gt;81&lt;/span&gt; &lt;span class=&quot;journal-issue&quot;&gt;1&lt;/span&gt;
&lt;span class=&quot;page&quot;&gt;
		Paper 97.
	 13 p. 
&lt;/span&gt;		 &lt;span class=&quot;year&quot;&gt;(2024)&lt;/span&gt;  
    &lt;/div&gt;
&lt;div class=&quot;pub-footer&quot;&gt;
    

	&lt;span class=&quot;language&quot; xmlns=&quot;http://www.w3.org/1999/html&quot;&gt;Nyelv:
			Angol
		 |  &lt;/span&gt;

	&lt;span class=&quot;identifiers&quot;&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;10.1007/s00018-024-05112-7&quot; target=&quot;_blank&quot; href=&quot;https://doi.org/10.1007/s00018-024-05112-7&quot;&gt;
									DOI
							&lt;/a&gt;
						&lt;/span&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;001169720400002&quot; target=&quot;_blank&quot; href=&quot;https://www.webofscience.com/wos/woscc/full-record/001169720400002&quot;&gt;
									WoS
							&lt;/a&gt;
						&lt;/span&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;85185513445&quot; target=&quot;_blank&quot; href=&quot;http://www.scopus.com/record/display.url?origin=inward&amp;eid=2-s2.0-85185513445&quot;&gt;
									Scopus
							&lt;/a&gt;
						&lt;/span&gt;
						&lt;span class=&quot;id identifier oa_none&quot; title=&quot;none&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;38372750&quot; target=&quot;_blank&quot; href=&quot;http://www.ncbi.nlm.nih.gov/entrez/query.fcgi?cmd=Retrieve&amp;db=PubMed&amp;list_uids=38372750&amp;dopt=Abstract&quot;&gt;
									PubMed
							&lt;/a&gt;
						&lt;/span&gt;
						&lt;span class=&quot;id identifier oa_NONE&quot; title=&quot;	Nincs
&quot;&gt;
							
							&lt;a style=&quot;color:blue&quot; title=&quot;https://www.scopus.com/pages/publications/85185513445?origin=resultslist&quot; target=&quot;_blank&quot; href=&quot;https://www.scopus.com/pages/publications/85185513445?origin=resultslist&quot;&gt;
									Egyéb URL
							&lt;/a&gt;
						&lt;/span&gt;
	&lt;/span&gt;


	&lt;OnlyViewableByAuthor&gt;&lt;div class=&quot;ratings&quot;&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Molecular Medicine&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;D1&lt;/div&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Pharmacology&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;D1&lt;/div&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Cell Biology&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q1&lt;/div&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Cellular and Molecular Neuroscience&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q1&lt;/div&gt;
				&lt;div class=&quot;journal-subject&quot;&gt;Folyóirat szakterülete: Scopus - Molecular Biology&amp;nbsp;&amp;nbsp;&amp;nbsp;SJR indikátor:&amp;nbsp;Q1&lt;/div&gt;
    &lt;/div&gt;&lt;/OnlyViewableByAuthor&gt;


	&lt;div class=&quot;publication-citation&quot; style=&quot;margin-left: 0.5cm;&quot;&gt;
		&lt;span title=&quot;Nyilvános idézőközlemények összesen, említések nélkül&quot; class=&quot;citingPub-count&quot;&gt;Nyilvános idéző összesen: 10&lt;/span&gt;
		| Független: 8
		| Függő: 2
		| Nem jelölt: 0
		| WoS jelölt: 9 
		|  Scopus jelölt:&amp;nbsp;10 
		|  WoS/Scopus jelölt:&amp;nbsp;10 
		|  DOI jelölt:&amp;nbsp;10 
		
	&lt;/div&gt;
    
    
	&lt;div class=&quot;publication-citation&quot;&gt;
		&lt;a target=&quot;_blank&quot; href=&quot;/api/publication?cond=citations.related;eq;34644013&amp;sort=publishedYear,desc&amp;sort=title&quot;&gt;
			Idézett közlemények száma: 8
		&lt;/a&gt;
	&lt;/div&gt;



    &lt;div class=&quot;mtid&quot;&gt;&lt;span class=&quot;long-pub-mtid&quot;&gt;Közlemény: 34644013&lt;/span&gt;
    | &lt;span class=&quot;status-data status-VALIDATED&quot;&gt; 	Egyeztetett
  &lt;/span&gt;
        
	
	
Forrás	 Idéző
	
	
    | &lt;span class=&quot;type-subtype&quot;&gt;Folyóiratcikk
			( Összefoglaló cikk
			
			)
		&lt;/span&gt;
      		| &lt;span class=&quot;pub-category&quot;&gt;Tudományos&lt;/span&gt;
	| &lt;span class=&quot;publication-sourceOfData&quot;&gt;kézi felvitel&lt;/span&gt;
&lt;/div&gt;

&lt;div class=&quot;funder&quot;&gt; (K131458),    (TKP2021-EGA-24),    (Molecular Biology Thematic Programme of Semmelweis University),    (Open access funding provided by Semmelweis University)   &lt;/div&gt;
&lt;div class=&quot;lastModified&quot;&gt;Utolsó módosítás: 2024.03.18. 08:53 Szalóky-Siki Ágnes (SE_KK_Admin5_SZSA, admin)
&lt;/div&gt;




	&lt;pre class=&quot;comment&quot; style=&quot;margin-top: 0; margin-bottom: 0;&quot;&gt;&lt;u&gt;Megjegyzés&lt;/u&gt;: Department of Molecular Biology, Semmelweis University, Budapest, Hungary            
            Division of Oncology, Department of Internal Medicine and Oncology, Semmelweis University, Budapest, Hungary            
            Turbine Ltd, Budapest, Hungary            
            Export Date: 17 June 2024            
            CODEN: CMLSF            
            Correspondence Address: ...&lt;/pre&gt;
&lt;/div&gt;&lt;/div&gt;</template2>
    </publication>
  </content>
</myciteResult>
