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A transcriptional roadmap for 2C-like–to–pluripotent state transition

机译:用于2C样到多能状态过渡的转录路线图

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In mouse embryonic stem cell (ESC), a small cell population displays totipotent features by expressing a set of genes that are transiently active in 2-cell–stage embryos. These 2-cell–like (2C-like) cells spontaneously transit back into the pluripotent state. We previously dissected the transcriptional dynamics of the transition from pluripotency to the totipotent 2C-like state and identified factors that modulate the process. However, how 2C-like cells transit back into the pluripotent state remains largely unknown. In this study, we analyzed the transcriptional dynamics from the 2C-like state to pluripotent ESCs and identified an intermediate state. The intermediate state characterized by two-wave step up-regulation of pluripotent genes is different from the one observed during the 2C-like entry transition. Nonsense-mediated Dux mRNA decay plays an important role in the 2C-like state exit. Thus, our study not only provides a transcriptional roadmap for 2C-like–to–pluripotent state transition but also reveals a key molecular event driving the transition.
机译:在小鼠胚胎干细胞(ESC)中,小细胞群通过表达一组瞬时活性在2细胞阶段胚胎中的基因显示全能特征。这些2细胞样(2C样)细胞自发地过度地回到多能状态。之前,我们以前解释了从多能性转变为Totipotent 2C的状态的转换动态,并确定了调节过程的因素。然而,2C样电池如何运转回多能状态仍然很大程度上是未知的。在这项研究中,我们将从类似的2C状态分析到多能ESC的转录动力学并识别中间状态。特征在于多能基因的两波步进上调的中间状态不同于在2C的进入转变过程中观察到的。废话介导的dux mRNA衰减在2C的状态出口中起着重要作用。因此,我们的研究不仅为2C的类似态转变提供了转录路线图,而且还揭示了推动过渡的关键分子事件。

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