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Zeb2 Regulates Cell Fate at the Exit from Epiblast State in Mouse Embryonic Stem Cells

机译:Zeb2在小鼠胚胎干细胞中调节从外表状态的出口处的细胞命运

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In human embryonic stem cells (ESCs) the transcription factor Zeb2 regulates neuroectoderm versus mesendoderm formation, but it is unclear how Zeb2 affects the global transcriptional regulatory network in these cell-fate decisions. We generated Zeb2 knockout (KO) mouse ESCs, subjected them as embryoid bodies (EBs) to neural and general differentiation and carried out temporal RNA-sequencing (RNA-seq) and reduced representation bisulfite sequencing (RRBS) analysis in neural differentiation. This shows that Zeb2 acts preferentially as a transcriptional repressor associated with developmental progression and that Zeb2 KO ESCs can exit from their naive state. However, most cells in these EBs stall in an early epiblast-like state and are impaired in both neural and mesendodermal differentiation. Genes involved in pluripotency, epithelial-to-mesenchymal transition (EMT), and DNA-(de)methylation, including Tet1, are deregulated in the absence of Zeb2. The observed elevated Tet1 levels in the mutant cells and the knowledge of previously mapped Tet1-binding sites correlate with loss-of-methylation in neural-stimulating conditions, however, after the cells initially acquired the correct DNA-methyl marks. Interestingly, cells from such Zeb2 KO EBs maintain the ability to re-adapt to 2i+LIF conditions even after prolonged differentiation, while knockdown of Tet1 partially rescues their impaired differentiation. Hence, in addition to its role in EMT, Zeb2 is critical in ESCs for exit from the epiblast state, and links the pluripotency network and DNA-methylation with irreversible commitment to differentiation.
机译:在人胚胎干细胞(ESC)中,转录因子Zeb2调节神经外胚层与Mesendoderm形成,但尚不清楚Zeb2如何影响这些细胞命运决策中的全局转录监管网络。我们生成了Zeb2敲除(KO)鼠标ESC,使它们作为胚状体(EBS)进行神经和一般分化,并进行了神经分化中的时间RNA测序(RNA-SEQ)并降低了亚硫酸氢盐测序(RRB)分析。这表明ZEB2优选地作为与发育进展相关的转录压缩机,并且Zeb2 KO ESC可以从其天真状态退出。然而,这些EBS中的大多数细胞在早期的小细胞样状态下停滞,并且在神经和中胚层分化中受损。参与多能性的基因,上皮 - 间充质转换(EMT)和DNA-(DE)甲基化,包括TET1,在不存在ZEB2的情况下都会取消调化。然而,观察到的突变细胞中的TET1水平和预先映射的TET1结合位点的知识与神经刺激条件中的甲基化损失相关,然而,在细胞最初获得正确的DNA-甲基标记之后。有趣的是,来自这种Zeb2 KO EBS的细胞即使在长时间分化后也能够重新适应2I + LIF条件的能力,而TET1的敲低部分抵押的分解。因此,除了其在EMT中的作用之外,ZEB2在ESC中对于从外部细胞状态出来的ESC至关重要,并将多能网和DNA - 甲基化与不可逆的致力分化联系起来。

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