Mitochondrially produced ATP affects stem cell pluripotency via Actl6a‐mediated histone acetylation

诱导多能干细胞 细胞生物学 胚胎干细胞 组蛋白 乙酰化 干细胞 生物 化学 分子生物学 遗传学 基因
作者
Ying Zhang,Peng Cui,Yuhuan Li,Guihai Feng,Man Tong,Lu Guo,Tianda Li,Lei Liu,Wei Li,Qi Zhou
出处
期刊:The FASEB Journal [Wiley]
卷期号:32 (4): 1891-1902 被引量:20
标识
DOI:10.1096/fj.201700626rr
摘要

ATP is mainly generated by glycolysis in pluripotent stem cells (PSCs) and is consumed to maintain cell viability. Differences in mitochondrial activity among induced (i)PSCs with different degrees of pluripotency are poorly understood. In this study, by comparing gene expression and mitochondrial activity among iPSCs with different degrees of pluripotency, we found that mitochondrial complex I gene expression, complex I activity, and cellular ATP levels were much higher in fully pluripotent stem cell lines than in partially pluripotent stem cell lines. Actin‐like protein 6a (Actl6a), a component of ATP‐dependent chromatin remodeling and histone acetylation complexes, was more highly expressed in fully pluripotent stem cell lines. ATP promoted Actl6a expression and histone acetylation. Actl6a knockdown reduced the pluripotency of embryonic stem cells (ESCs), and this reduction could not be rescued by the addition of ATP. Furthermore, inhibiting ATP formation by treatment with rotenone reduced the pluripotency of ESCs. These data suggest that the abundance of mitochondrially produced ATP affects stem cell pluripotency via Actl6a‐mediated histone acetylation.— Zhang, Y., Cui, P., Li, Y., Feng, G., Tong, M., Guo, L., Li, T., Liu, L., Li, W., Zhou, Q. Mitochondrially produced ATP affects stem cell pluripotency via Actl6a‐mediated histone acetylation. FASEB J. 32, 1891–1902 (2018). www.fasebj.org
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