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Maternal pluripotency factors initiate extensive chromatin remodelling to predefine first response to inductive signals

机译:孕产妇多能性因子启动广泛的染色质重塑以预先定义对感应信号的首次反应

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摘要

Embryonic development yields many different cell types in response to just a few families of inductive signals. The property of signal-receiving cells that determines how they respond to inductive signals is known as competence, and it differs in different cell types. Here, we explore the ways in which maternal factors modify chromatin to specify initial competence in the frog Xenopus tropicalis. We identify early-engaged regulatory DNA sequences, and infer from them critical activators of the zygotic genome. Of these, we show that the pioneering activity of the maternal pluripotency factors Pou5f3 and Sox3 determines competence for germ layer formation by extensively remodelling compacted chromatin before the onset of inductive signalling. This remodelling includes the opening and marking of thousands of regulatory elements, extensive chromatin looping, and the co-recruitment of signal-mediating transcription factors. Our work identifies significant developmental principles that inform our understanding of how pluripotent stem cells interpret inductive signals.
机译:胚胎发育仅响应少数几类感应信号而产生许多不同的细胞类型。确定信号接收单元如何响应感应信号的属性被称为能力,并且在不同的单元类型中有所不同。在这里,我们探讨了母本因素修改染色质以指定青蛙Xenopustropicis初始能力的方式。我们确定早期参与的监管DNA序列,并从中推断合子基因组的关键激活因子。其中,我们表明母体多能性因子Pou5f3和Sox3的开拓性活动通过在诱导信号传导发生之前广泛地重塑紧密染色质来决定胚层形成的能力。这种重塑包括打开和标记成千上万个调节元件,广泛的染色质环化以及信号介导转录因子的共招募。我们的工作确定了重要的发展原理,这些原理有助于我们了解多能干细胞如何解释诱导信号。

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