4.7 Article

Concise Review: The Sox2-Oct4 Connection: Critical Players in a Much Larger Interdependent Network Integrated at Multiple Levels

期刊

STEM CELLS
卷 31, 期 6, 页码 1033-1039

出版社

WILEY
DOI: 10.1002/stem.1352

关键词

Embryonic stem cells; Induced pluripotent stem cells; Sox2; Oct4; Transcription factors; Proteomics; Gene regulatory networks; Transcriptional circuitry; DNA repair; Reprogramming; Self-renewal

资金

  1. National Institute of General Medical Sciences [GM 080751]

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The transcription factors Sox2 and Oct4 have been a major focus of stem cell biology since the discovery, more than 10 years ago, that they play critical roles during embryogenesis. Early work established that these two transcription factors work together to regulate genes required for the self-renewal and pluripotency of embryonic stem cells (ESC). Surprisingly, small changes (similar to twofold) in the levels of either Oct4 or Sox2 induce the differentiation of ESC. Consequently, ESC must maintain the levels of these two transcription factors within narrow limits. Genome-wide binding studies and unbiased proteomic screens have been conducted to decipher the complex roles played by Oct4 and Sox2 in the transcriptional circuitry of ESC. Together, these and other studies provide a comprehensive understanding of the molecular machinery that sustains the self-renewal of ESC and restrains their differentiation. Importantly, these studies paint a landscape in which Oct4 and Sox2 are part of a much larger interdependent network composed of many transcription factors that are interconnected at multiple levels of function.

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