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INO80 facilitates pluripotency gene activation in embryonic stem cell self-renewal, reprogramming, and blastocyst development

机译:INO80促进胚胎干细胞自我更新,重编程和胚泡发育中的多能性基因激活

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The master transcription factors play integral roles in the pluripotency transcription circuitry of embryonic stem cells (ESCs). How they selectively activate expression of the pluripotency network while simultaneously repressing genes involved in differentiation is not fully understood. Here, we define a requirement for the INO80 complex, a SWI/SNF family chromatin remodeler, in ESC self-renewal, somatic cell reprogramming, and blastocyst development. We show that Ino80, the chromatin remodeling ATPase, co-occupies pluripotency gene promoters with the master transcription factors, and its occupancy is dependent on OCT4 and WDR5. At the pluripotency genes, Ino80 maintains an open chromatin architecture and licenses recruitment of Mediator and RNA polymerase II for gene activation. Our data reveal an essential role for INO80 in the expression of the pluripotency network and illustrate the coordination among chromatin remodeler, transcription factor, and histone-modifying enzyme in the regulation of the pluripotent state.
机译:主转录因子在胚胎干细胞(ESC)的多能转录电路中起着不可或缺的作用。他们如何选择性激活多能性网络的表达,同时抑制分化相关基因的方式尚未完全了解。在这里,我们定义了ESC80自我更新,体细胞重编程和胚泡发育过程中对SWI / SNF家族染色质重塑剂INO80复合物的要求。我们表明,Ino80,染色质重塑ATPase,与主转录因子共同占据多能性基因启动子,其占有率取决于OCT4和WDR5。在多能性基因处,Ino80保持开放的染色质结构,并许可募集Mediator和RNA聚合酶II进行基因激活。我们的数据揭示了INO80在多能网络表达中的重要作用,并说明了染色质重塑剂,转录因子和组蛋白修饰酶在多能状态调节中的协调作用。

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