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The chromatin accessibility landscape reveals distinct transcriptional regulation in the induction of human primordial germ cell-like cells from pluripotent stem cells.


ABSTRACT: In vitro induction of human primordial germ cell-like cells (hPGCLCs) provides an ideal platform to recapitulate hPGC development. However, the detailed molecular mechanisms regulating the induction of hPGCLCs remain largely uncharacterized. Here, we profiled the chromatin accessibility and transcriptome dynamics throughout the process of hPGCLC induction. Genetic ablation of SOX15 indicated the crucial roles of SOX15 in the maintenance of hPGCLCs. Mechanistically, SOX15 exerted its roles via suppressing somatic gene expression and sustaining latent pluripotency. Notably, ETV5, a downstream regulator of SOX15, was also uncovered to be essential for hPGCLC maintenance. Finally, a stepwise switch of OCT4/SOX2, OCT4/SOX17, and OCT4/SOX15 binding motifs were found to be enriched in closed-to-open regions of human embryonic stem cells, and early- and late-stage hPGCLCs, respectively. Collectively, our data characterized the chromatin accessibility and transcriptome landscapes throughout hPGCLC induction and defined the SOX15-mediated regulatory networks underlying this process.

SUBMITTER: Wang X 

PROVIDER: S-EPMC8185471 | biostudies-literature | 2021 May

REPOSITORIES: biostudies-literature

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The chromatin accessibility landscape reveals distinct transcriptional regulation in the induction of human primordial germ cell-like cells from pluripotent stem cells.

Wang Xiaoman X   Veerapandian Veeramohan V   Yang Xinyan X   Song Ke K   Xu Xiaoheng X   Cui Manman M   Yuan Weiyan W   Huang Yaping Y   Xia Xinyu X   Yao Zhaokai Z   Wan Cong C   Luo Fang F   Song Xiuling X   Wang Xiaoru X   Zheng Yi Y   Hutchins Andrew Paul AP   Jauch Ralf R   Liang Meiyan M   Wang Chenhong C   Liu Zhaoting Z   Chang Gang G   Zhao Xiao-Yang XY  

Stem cell reports 20210429 5


In vitro induction of human primordial germ cell-like cells (hPGCLCs) provides an ideal platform to recapitulate hPGC development. However, the detailed molecular mechanisms regulating the induction of hPGCLCs remain largely uncharacterized. Here, we profiled the chromatin accessibility and transcriptome dynamics throughout the process of hPGCLC induction. Genetic ablation of SOX15 indicated the crucial roles of SOX15 in the maintenance of hPGCLCs. Mechanistically, SOX15 exerted its roles via su  ...[more]

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