The sulfiredoxin-peroxiredoxin redox system regulates the stemness and survival of colon cancer stem cells

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dc.contributor.authorI S Song-
dc.contributor.authorY J Jeong-
dc.contributor.authorYena Jung-
dc.contributor.authorYoung-Ho Park-
dc.contributor.authorS Shim-
dc.contributor.authorS J Kim-
dc.contributor.authorD W Eom-
dc.contributor.authorS M Hong-
dc.contributor.authorP C W Lee-
dc.contributor.authorSun-Uk Kim-
dc.contributor.authorS W Jang-
dc.date.accessioned2021-11-22T15:30:37Z-
dc.date.available2021-11-22T15:30:37Z-
dc.date.issued2021-
dc.identifier.issn2213-2317-
dc.identifier.urihttps://oak.kribb.re.kr/handle/201005/25041-
dc.description.abstractCancer stem cells (CSCs) initiate tumor formation and are known to be resistant to chemotherapy. A metabolic alteration in CSCs plays a critical role in stemness and survival. However, the association between mitochondrial energy metabolism and the redox system remains undefined in colon CSCs. In this study, we assessed the role of the Sulfiredoxin-Peroxiredoxin (Srx-Prx) redox system and mitochondrial oxidative phosphorylation (OXPHOS) in maintaining the stemness and survival of colon CSCs. Notably, Srx contributed to the stability of PrxI, PrxII, and PrxIII proteins in colon CSCs. Increased Srx expression promoted the stemness and survival of CSCs and was important for the maintenance of the mitochondrial OXPHOS system. Furthermore, Nrf2 and FoxM1 led to OXPHOS activation and upregulated expression of Srx-Prx redox system-related genes. Therefore, the Nrf2/FoxM1-induced Srx-Prx redox system is a potential therapeutic target for eliminating CSCs in colon cancer.-
dc.publisherElsevier-
dc.titleThe sulfiredoxin-peroxiredoxin redox system regulates the stemness and survival of colon cancer stem cells-
dc.title.alternativeThe sulfiredoxin-peroxiredoxin redox system regulates the stemness and survival of colon cancer stem cells-
dc.typeArticle-
dc.citation.titleRedox Biology-
dc.citation.number0-
dc.citation.endPage102190-
dc.citation.startPage102190-
dc.citation.volume48-
dc.contributor.affiliatedAuthorYena Jung-
dc.contributor.affiliatedAuthorYoung-Ho Park-
dc.contributor.affiliatedAuthorSun-Uk Kim-
dc.contributor.alternativeName송인성-
dc.contributor.alternativeName정유정-
dc.contributor.alternativeName정예나-
dc.contributor.alternativeName박영호-
dc.contributor.alternativeName심성보-
dc.contributor.alternativeName김성주-
dc.contributor.alternativeName엄대운-
dc.contributor.alternativeName홍승모-
dc.contributor.alternativeNameLee-
dc.contributor.alternativeName김선욱-
dc.contributor.alternativeName장성욱-
dc.identifier.bibliographicCitationRedox Biology, vol. 48, pp. 102190-102190-
dc.identifier.doi10.1016/j.redox.2021.102190-
dc.subject.keywordColon-
dc.subject.keywordCancer stem cell-
dc.subject.keywordSulfiredoxin-
dc.subject.keywordPeroxiredoxin-
dc.subject.keywordStemness-
dc.subject.keywordROS-
dc.subject.keywordOXPHOS-
dc.subject.localcolon-
dc.subject.localColon-
dc.subject.localcancer stem cell-
dc.subject.localCancer stem cell (CSC)-
dc.subject.localCancer stem cell-
dc.subject.localCancer stem cells-
dc.subject.localCancer Stem Cells-
dc.subject.localSulfiredoxin-
dc.subject.localPeroxiredoxin-
dc.subject.localperoxiredoxin-
dc.subject.localPeroxiredoxins-
dc.subject.localStemness-
dc.subject.localReactive oxidative species-
dc.subject.localReactive oxygen species(ROS)-
dc.subject.localReactive oxygen species-
dc.subject.localReactive Oxygen Species (ROS)-
dc.subject.localReactive Oxygen Species-
dc.subject.localROS-
dc.subject.localReactive oxygen species (ROS)-
dc.subject.localreactive oxygen species-
dc.subject.localreactive oxygen species (ROS)-
dc.subject.localOXPHOS-
dc.description.journalClassY-
Appears in Collections:
Ochang Branch Institute > Division of National Bio-Infrastructure > Futuristic Animal Resource & Research Center > 1. Journal Articles
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