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The Dual Role of Sulforaphane-Induced Cellular Stress—A Systems Biological Study
Holczer, M. [Holczer, Marianna (Biokémia), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)
;
Besze, B.
;
Lehel, A.
;
Kapuy, O. ✉ [Kapuy, Orsolya (Biokémia), szerző] Molekuláris Biológiai Tanszék (SE / AOK / I / BMBI)
Angol nyelvű Szakcikk (Folyóiratcikk) Tudományos
Megjelent:
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 1661-6596 1422-0067
25
(2)
Paper: 1220
, 20 p.
2024
SJR Scopus - Organic Chemistry: D1
Azonosítók
MTMT: 34559635
DOI:
10.3390/ijms25021220
WoS:
001151547000001
Scopus:
85183353507
PubMed:
38279216
Támogatások:
(ÚNKP-22-4-II-SE-21)
(FK-134267)
The endoplasmic reticulum (ER) plays a crucial role in cellular homeostasis. When ER stress is generated, an autophagic self-digestive process is activated to promote cell survival; however, cell death is induced in the case of excessive levels of ER stress. The aim of the present study was to investigate the effect of a natural compound called sulforaphane (SFN) upon ER stress. Our goal was to investigate how SFN-dependent autophagy activation affects different stages of ER stress induction. We approached our scientific analysis from a systems biological perspective using both theoretical and molecular biological techniques. We found that SFN induced the various cell-death mechanisms in a concentration- and time-dependent manner. The short SFN treatment at low concentrations promoted autophagy, whereas the longer treatment at higher concentrations activated cell death. We proved that SFN activated autophagy in a mTORC1-dependent manner and that the presence of ULK1 was required for its function. A low concentration of SFN pre- or co-treatment combined with short and long ER stress was able to promote cell survival via autophagy induction in each treatment, suggesting the potential medical importance of SFN in ER stress-related diseases. © 2024 by the authors.
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2026-09-05 04:54
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