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Oxidative phosphorylation safeguards pluripotency via UDP-N-acetylglucosamine 被引量:1
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作者 Jiani Cao Meng Li +16 位作者 Kun Liu Xingxing Shi Ning Sui Yuchen Yao Xiaojing Wang Shiyu Li Yuchang Tian Shaojing Tan Qian Zhao Liang Wang xiahua chai Lin Zhang Chong Liu Xing Li Zhijie Chang Dong Li Tongbiao Zhao 《Protein & Cell》 SCIE CSCD 2023年第5期376-381,共6页
Dear Editor,Embryonic stem cells(ESCs)have been assumed to possess immature mitochondria and to favor anaerobic glycolysis over oxidative phosphorylation(OXPHOS)for energy production.This proposition is largely based ... Dear Editor,Embryonic stem cells(ESCs)have been assumed to possess immature mitochondria and to favor anaerobic glycolysis over oxidative phosphorylation(OXPHOS)for energy production.This proposition is largely based on the findings that ESCs possess globular mitochondria with blurred cristae,and the facts that ESCs have higher glycolysis activity and lower mitochondrial respiration capacity than somatic cells(Kondoh et al.,2007;Folmes et al.,2011,2012;Zhang et al.,2012;Xu et al.,2013;Ito and Suda,2014;Gu et al.,2016).However,recent studies have shown that mitochondrial autophagy and mitochondrial dynamics are pivotal for ESC self-renewal and pluripotency(Todd et al.,2010;Liu et al.,2016,2020;Wang et al.,2019;Zhong et al.,2019).These studies have raised a fundamental question:what is the contribution and functional mechanism of mitochondrial respiration in pluripotency regulation? 展开更多
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