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Actl6a 可防止胚胎干细胞分化为原始内胚层。

Actl6a protects embryonic stem cells from differentiating into primitive endoderm.

机构信息

Key Laboratory of Gene Engineering of the Ministry of Education, Institute of Healthy Aging Research and SYSU-BCM Joint Research Center, School of Life Sciences, Sun Yat-sen University, Guangzhou, China.

Key Laboratory of Reproductive Medicine of Guangdong Province, School of Life Sciences and the First Affiliated Hospital, Sun Yat-sen University, Guangzhou, China.

出版信息

Stem Cells. 2015 Jun;33(6):1782-93. doi: 10.1002/stem.2000.

Abstract

Actl6a (actin-like protein 6A, also known as Baf53a or Arp4) is a subunit shared by multiple complexes including esBAF, INO80, and Tip60-p400, whose main components (Brg1, Ino80, and p400, respectively) are crucial for the maintenance of embryonic stem cells (ESCs). However, whether and how Actl6a functions in ESCs has not been investigated. ESCs originate from the epiblast (EPI) that is derived from the inner cell mass (ICM) in blastocysts, which also give rise to primitive endoderm (PrE). The molecular mechanisms for EPI/PrE specification remain unclear. In this study, we provide the first evidence that Actl6a can protect mouse ESCs (mESCs) from differentiating into PrE. While RNAi knockdown of Actl6a, which appeared highly expressed in mESCs and downregulated during differentiation, induced mESCs to differentiate towards the PrE lineage, ectopic expression of Actl6a was able to repress PrE differentiation. Our work also revealed that Actl6a could interact with Nanog and Sox2 and promote Nanog binding to pluripotency genes such as Oct4 and Sox2. Interestingly, cells depleted of p400, but not of Brg1 or Ino80, displayed similar PrE differentiation patterns. Mutant Actl6a with impaired ability to bind Tip60 and p400 failed to block PrE differentiation induced by Actl6a dysfunction. Finally, we showed that Actl6a could target to the promoters of key PrE regulators (e.g., Sall4 and Fgf4), repressing their expression and inhibiting PrE differentiation. Our findings uncover a novel function of Actl6a in mESCs, where it acts as a gatekeeper to prevent mESCs from entering into the PrE lineage through a Yin/Yang regulating pattern.

摘要

Actl6a(肌动蛋白样蛋白 6A,也称为 Baf53a 或 Arp4)是多个复合物的共享亚基,包括 esBAF、INO80 和 Tip60-p400,其主要成分(Brg1、Ino80 和 p400)分别对于维持胚胎干细胞(ESCs)至关重要。然而,Actl6a 是否以及如何在 ESCs 中发挥作用尚未得到研究。ESCs 来源于胚泡中的内细胞团(ICM)衍生的上胚层(EPI),也产生原始内胚层(PrE)。EPI/PrE 特化的分子机制尚不清楚。在这项研究中,我们首次提供证据表明 Actl6a 可以保护小鼠胚胎干细胞(mESCs)免受分化为 PrE。虽然 Actl6a 在 mESCs 中高度表达且在分化过程中下调的 RNAi 敲低会诱导 mESCs 向 PrE 谱系分化,但 Actl6a 的异位表达能够抑制 PrE 分化。我们的工作还揭示了 Actl6a 可以与 Nanog 和 Sox2 相互作用,并促进 Nanog 结合到多能性基因,如 Oct4 和 Sox2。有趣的是,耗尽 p400 的细胞,但不是 Brg1 或 Ino80,显示出类似的 PrE 分化模式。丧失与 Tip60 和 p400 结合能力的突变 Actl6a 无法阻止由 Actl6a 功能障碍引起的 PrE 分化。最后,我们表明 Actl6a 可以靶向关键 PrE 调节因子(例如,Sall4 和 Fgf4)的启动子,抑制其表达并抑制 PrE 分化。我们的发现揭示了 Actl6a 在 mESCs 中的新功能,它作为一个守门员,通过阴阳调节模式阻止 mESCs 进入 PrE 谱系。

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