内胚层
细胞生物学
重编程
诱导多能干细胞
染色质
染色质重塑
细胞分化
柠檬酸循环
生物
化学
胚芽层
细胞周期
生物化学
细胞命运测定
胚胎干细胞
调节器
代谢途径
干细胞
氧化磷酸化
新陈代谢
线粒体
基因表达调控
细胞内
代谢控制分析
细胞周期检查点
作者
Liming Meng,Jing Lv,Ying Yi,Xianchun Lan,Chenchao Yan,Lihang Zhu,Jie Yang,Wei Jiang
标识
DOI:10.1038/s41467-026-69510-0
摘要
Cell fate determination is closely linked to metabolic state, yet how metabolic remodeling influences human pluripotent stem cells differentiation into three germ layers remains incompletely understood. Here, we reveal that definitive endoderm differentiation from human pluripotent stem cells requires a TGFβ-driven metabolic switch characterized by reduced lactate production and enhanced TCA cycle activity and oxidative phosphorylation, mediated by PDHB. Disruption of glucose utilization or pyruvate entry into the TCA cycle markedly impairs endoderm differentiation, whereas inhibition of lactate production enhances differentiation efficiency. Mechanistically, blockade of glucose metabolism or the TCA cycle reduces intracellular ATP levels, compromising the activity of BAF complex, an ATP-dependent chromatin remodeling complex centered on BRG1. This complex promotes chromatin accessibility and activates endodermal gene programs during differentiation. Together, these findings highlight metabolic reprogramming as a key regulator of human endoderm fate through ATP-dependent control of chromatin remodeling.
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