{ "labelLang" : "hun", "responseDate" : "2024-03-28 17:04", "paging" : { "last" : false, "first" : true, "totalPages" : 2, "totalElements" : 175, "totalUncutElements" : 175, "totalEstimatedElements" : 100, "size" : 100, "number" : 1, "numberOfElements" : 100, "sort" : [ { "direction" : "DESC", "property" : "publishedYear", "ascending" : false }, { "direction" : "ASC", "property" : "firstAuthor", "ascending" : true }, { "direction" : "ASC", "property" : "title", "ascending" : true } ] }, "content" : [ { "otype" : "JournalArticle", "mtid" : 33292517, "status" : "APPROVED", "published" : true, "comment" : "Cited By :2 \n Export Date: 5 December 2022 \n CODEN: JGPLA \n Correspondence Address: Nielsen, J.; Department of Sports Science and Clinical Biomechanics, Denmark; email: jnielsen@health.sdu.dk \n Funding details: TKIF2011-058 \n Funding details: Syddansk Universitet, SDU, DK-5230 M \n Funding text 1: This study was supported by a grant from the Ministry of Culture Committee on Sports Research (TKIF2011-058). The authors declare no competing financial interests. \n Funding text 2: Eduardo Ríos served as editor. The experiments were performed at the Department of Sports Science and Clinical Biomechanics (in vitro experiments and metabolite analyses) and Institute of Pathology, Faculty of Health Science (TEM analyses), University of Southern Den-mark, DK-5230 M, Denmark. We thank Kirsten Hansen and Karin Trampedach for skillful technical assistance. This study was supported by a grant from the Ministry of Culture Committee on Sports Research (TKIF2011-058). The authors declare no competing financial interests. Author contributions: J. Nielsen contributed with con-ceptualization, formal analysis, investigation, data curation, writing—original draft, visualization, supervision, project ad-ministration, and funding acquisition. P. Dubillot contributed with conceptualization, formal analysis, investigation, writing— review and editing, and visualization. M.-L.H. 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Transmission electron microscopy imaging has revealed the existence of a heterogenic subcellular distribution of three distinct glycogen pools in skeletal muscle, which are thought to reflect the requirements for local energy stores at the subcellular level. Here, we show that the three main energy-consuming ATPases in skeletal muscles (Ca2+, Na+,K+, and myosin ATPases) utilize different local pools of glycogen. These results clearly demonstrate compartmentalized glycogen metabolism and emphasize that spatially distinct pools of glycogen particles act as energy substrate for separated energy requiring processes, suggesting a new model for understanding glycogen metabolism in working muscles, muscle fatigue, and metabolic disorders. These observations suggest that the distinct glycogen pools can regulate the functional state of mammalian muscle cells and have important implications for the understanding of how the balance between ATP utilization and ATP production is regulated at the cellular level in general and in skeletal muscle fibers in particular. © 2022 Nielsen et al.", "digital" : null, "printed" : null, "sourceYear" : 2022, "foreignEdition" : true, "foreignLanguage" : true, "fullPublication" : true, "conferencePublication" : false, "nationalOrigin" : null, "missingAuthor" : false, "oaType" : "NONE", "oaCheckDate" : "2022-12-05", "oaFree" : false, "citationCount" : 0, "citationCountUnpublished" : 0, "citationCountWoOther" : 0, "independentCitCountWoOther" : 0, "doiCitationCount" : 0, "wosCitationCount" : 0, "scopusCitationCount" : 0, "independentCitationCount" : 0, "unhandledCitationCount" : 0, "citingPubCount" : 0, "independentCitingPubCount" : 0, "unhandledCitingPubCount" : 0, "citedPubCount" : 1, "citedCount" : 1, "ratings" : [ { "otype" : "SjrRating", "mtid" : 11285723, "link" : "/api/sjrrating/11285723", "label" : "sjr:Q1 (2022) Scopus - Physiology JOURNAL OF GENERAL PHYSIOLOGY 0022-1295 1540-7748", "listPos" : 21, "rankValue" : 0.24, "type" : "journal", "ratingType" : { "otype" : "RatingType", "mtid" : 10002, "link" : "/api/ratingtype/10002", "label" : "sjr", "code" : "sjr", "published" : true, "snippet" : true }, "subject" : { "otype" : "ClassificationExternal", "mtid" : 1314, "link" : "/api/classificationexternal/1314", "label" : "Scopus - Physiology", "published" : true, "oldId" : 1314, "snippet" : true }, "ranking" : "Q1", "calculation" : "FROM_LAST_YEAR", "published" : true, "snippet" : true } ], "ratingsForSort" : "Q1", "hasCitationDuplums" : false, "userChangeableUntil" : "2023-03-05T14:38:06.346+0000", "directInstitutesForSort" : "", "ownerAuthorCount" : 1, "ownerInstituteCount" : 3, "directInstituteCount" : 0, "authorCount" : 4, "contributorCount" : 0, "hasQualityFactor" : true, "link" : "/api/publication/33292517", "label" : "Nielsen J. et al. 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