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Pluripotency state transition of embryonic stem cells requires the turnover of histone chaperone FACT on chromatin.


ABSTRACT: The differentiation of embryonic stem cells (ESCs) begins with the transition from the naive to the primed state. The formative state was recently established as a critical intermediate between the two states. Here, we demonstrate the role of the histone chaperone FACT in regulating the naive-to-formative transition. We found that the Q265K mutation in the FACT subunit SSRP1 increased the binding of FACT to histone H3-H4, impaired nucleosome disassembly in vitro, and reduced the turnover of FACT on chromatin in vivo. Strikingly, mouse ESCs harboring this mutation showed elevated naive-to-formative transition. Mechanistically, the SSRP1-Q265K mutation enriched FACT at the enhancers of formative-specific genes to increase targeted gene expression. Together, these findings suggest that the turnover of FACT on chromatin is crucial for regulating the enhancers of formative-specific genes, thereby mediating the naive-to-formative transition. This study highlights the significance of FACT in fine-tuning cell fate transition during early development.

SUBMITTER: Zhao H 

PROVIDER: S-EPMC10783625 | biostudies-literature | 2024 Jan

REPOSITORIES: biostudies-literature

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Pluripotency state transition of embryonic stem cells requires the turnover of histone chaperone FACT on chromatin.

Zhao Hang H   Li Di D   Xiao Xue X   Liu Cuifang C   Chen Guifang G   Su Xiaoyu X   Yan Zhenxin Z   Gu Shijia S   Wang Yizhou Y   Li Guohong G   Feng Jianxun J   Li Wei W   Chen Ping P   Yang Jiayi J   Li Qing Q  

iScience 20231128 1


The differentiation of embryonic stem cells (ESCs) begins with the transition from the naive to the primed state. The formative state was recently established as a critical intermediate between the two states. Here, we demonstrate the role of the histone chaperone FACT in regulating the naive-to-formative transition. We found that the Q265K mutation in the FACT subunit SSRP1 increased the binding of FACT to histone H3-H4, impaired nucleosome disassembly <i>in vitro</i>, and reduced the turnover  ...[more]

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