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Transcription elongation factor Tcea3 regulates the pluripotent differentiation potential of mouse embryonic stem cells via the Lefty1-Nodal-Smad2 pathway

机译:转录伸长因子TCeA3通过左侧α-核心 - Smad2途径调节小鼠胚胎干细胞的多能分化潜力

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摘要

Self-renewal and pluripotency are hallmark properties of pluripotent stem cells, including embryonic stem cells (ESCs) and iPS cells. Previous studies revealed the ESC-specific core transcription circuitry and showed that these core factors (e.g., Oct3/4, Sox2, and Nanog) regulate not only self-renewal but also pluripotent differentiation. However, it remains elusive how these two cell states are regulated and balanced during in vitro replication and differentiation. Here, we report that the transcription elongation factor Tcea3 is highly enriched in mouse ESCs and plays important roles in regulating the differentiation. Strikingly, altering Tcea3 expression in mouse ESCs did not affect self-renewal under non-differentiating condition; however, upon exposure to differentiating cues, its overexpression impaired in vitro differentiation capacity, and its knockdown biased differentiation towards mesodermal and endodermal fates. Furthermore, we identified Lefty1 as a downstream target of Tcea3 and show that the Tcea3-Lefty1-Nodal-Smad2 pathway is an innate program critically regulating cell fate choices between self-replication and differentiation commitment. Together, we propose that Tcea3 critically regulates pluripotent differentiation of mouse ESCs as a molecular rheostat of Nodal-Smad2/3 signaling.
机译:自我更新和多能性是多能干细胞的特征,包括胚胎干细胞(ESC)和iPS细胞。先前的研究揭示了ESC特异的核心转录途径,并表明这些核心因子(例如Oct3 / 4,Sox2和Nanog)不仅调节自我更新,而且调节多能分化。然而,在体外复制和分化过程中如何调节和平衡这两种细胞状态仍然难以捉摸。在这里,我们报道转录延伸因子Tcea3在小鼠胚胎干细胞中高度丰富,并在调节分化中起重要作用。令人惊讶的是,在非分化条件下,小鼠ESC中Tcea3表达的改变不会影响自我更新。然而,一旦暴露于分化线索,其过度表达会损害体外分化能力,而其敲低则倾向于分化为中胚层和内胚层命运。此外,我们确定Lefty1为Tcea3的下游目标,并表明Tcea3-Lefty1-Nodal-Smad2途径是一种固有的程序,可严格调节自我复制和分化承诺之间的细胞命运选择。在一起,我们建议Tcea3关键调节小鼠胚胎干细胞的多能分化作为Nodal-Smad2 / 3信号传导的分子变阻器。

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