4.8 Article

Comprehensive profiling reveals mechanisms of SOX2-mediated cell fate specification in human ESCs and NPCs

期刊

CELL RESEARCH
卷 26, 期 2, 页码 171-189

出版社

INST BIOCHEMISTRY & CELL BIOLOGY
DOI: 10.1038/cr.2016.15

关键词

SOX2; hESCs; hNPCs; Wnt; H2A.Z

资金

  1. Chinese Academy of Science [XDA01010102]
  2. Ministry of Science and Technology of China [2011CB965101, 2013CB967101]
  3. National Natural Science Foundation [31471393, 91419309, 31322031, 31371288, 31571365]

向作者/读者索取更多资源

SOX2 is a key regulator of multiple types of stem cells, especially embryonic stem cells (ESCs) and neural progenitor cells (NPCs). Understanding the mechanism underlying the function of SOX2 is of great importance for realizing the full potential of ESCs and NPCs. Here, through genome-wide comparative studies, we show that SOX2 executes its distinct functions in human ESCs (hESCs) and hESC-derived NPCs (hNPCs) through cell type-and stage-dependent transcription programs. Importantly, SOX2 suppresses non-neural lineages in hESCs and regulates neurogenesis from hNPCs by inhibiting canonical Wnt signaling. In hESCs, SOX2 achieves such inhibition by direct transcriptional regulation of important Wnt signaling modulators, WLS and SFRP2. Moreover, SOX2 ensures pluripotent epigenetic landscapes via interacting with histone variant H2A.Z and recruiting polycomb repressor complex 2 to poise developmental genes in hESCs. Together, our results advance our understanding of the mechanism by which cell type-specific transcription factors control lineage-specific gene expression programs and specify cell fate.

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