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首页> 外文期刊>Science Advances >Mga safeguards embryonic stem cells from acquiring extraembryonic endoderm fates
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Mga safeguards embryonic stem cells from acquiring extraembryonic endoderm fates

机译:MGA保护胚胎干细胞获取Impereembryonic EndoDerm命名

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摘要

Polycomb group (PcG) proteins form multiprotein complexes that affect stem cell identity and fate decisions by still largely unexplored mechanisms. Here, by performing a CRISPR-based loss-of-function screen in embryonic stem cells (ESCs), we identify PcG gene Mga involved in the repression of endodermal transcription factor Gata6 . We report that deletion of Mga results in peri-implantation embryonic lethality in mice. We further demonstrate that Mga -null ESCs exhibit impaired self-renewal and spontaneous differentiation to primitive endoderm (PE). Our data support a model in which Mga might serve as a scaffold for PRC1.6 assembly and guide this multimeric complex to specific genomic targets including genes that encode endodermal factors Gata4, Gata6, and Sox17. Our findings uncover an unexpected function of Mga in ESCs, where it functions as a gatekeeper to prevent ESCs from entering into the PE lineage by directly repressing expression of a set of endoderm differentiation master genes.
机译:Polycomb组(PCG)蛋白质形成多素蛋白复合物,其通过仍然主要是未开发的机制来影响干细胞标识和命运决策。这里,通过在胚胎干细胞(ESC)中进行基于CRISPR的功能缺失筛选,我们鉴定涉及抑制内胚层转录因子GATA6的PCG基因MGA。我们认为缺失MGA导致小鼠胚胎胚胎致死症的结果。我们进一步证明MGA -NULL ESC对原始内胚层(PE)表现出损害的自我更新和自发分化。我们的数据支持一种模型,其中MGA可以用作PRC1.6组件的支架,并将该多聚体复合物引导到特定的基因组靶标,包括编码内胚层因子GATA4,GATA6和SOX17的基因。我们的研究结果发现了ESC的MGA的意外功能,其中它用作门守,以防止ESC通过直接压制一组内胚层分化母基因的表达来进入PE谱系。

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