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首页> 外文期刊>Developmental cell >Ubiquitination-Independent Repression of PRC1 Targets during Neuronal Fate Restriction in the Developing Mouse Neocortex
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Ubiquitination-Independent Repression of PRC1 Targets during Neuronal Fate Restriction in the Developing Mouse Neocortex

机译:在培养的小鼠Neocortex中神经元命运限制期间,泛育无关抑制PRC1靶标

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摘要

Polycomb repressive complex (PRC) 1 maintains developmental genes in a poised state through monoubiquitination (Ub) of histone H2A. Although Ub-independent functions of PRC1 have also been suggested, it has remained unclear whether Ub-dependent and -independent functions of PRC1 operate differentially in a developmental context. Here, we show that the E3 ubiquitin ligase activity of Ring1B, a core component of PRC1, is necessary for the temporary repression of key neuronal genes in neurogenic (early-stage) neural stem or progenitor cells (NPCs) but is dispensable for the persistent repression of these genes associated with the loss of neurogenic potential in astrogliogenic (late-stage) NPCs. Our results also suggest that histone deacetylase (HDAC) activity of the NuRD/MBD3 complex and Phc2-dependent PRC1 clustering are necessary for the transition from the Ub-dependent to -independent function of PRC1. Together, these results indicate that Ub-independent mode of repression by PRC1 plays a key role in mammalian development during cell fate restriction.
机译:Polycomb压抑复合物(PRC)1通过组蛋白H2a的单泊丙基(UB)在俯视状态下维持发育基因。虽然也提出了UB独立的职能,但还提出了PRC1的UB依赖性和依赖功能是否在发育背景下差异化。在这里,我们表明,Ring1b的E3泛素连接酶活性,PRC1的核心组分是神经源性(早期)神经茎或祖细胞(NPC)中的关键神经元基因的临时抑制所必需的必要条件,但是持续存在抑制与星形生成(晚期)NPC中的神经源性潜力丧失相关的这些基因。我们的研究结果还表明,从PRC1的UB取决于-INCEDENDENT功能的转变,NERD / MBD3复合物和PHC2依赖性PRC1聚类的组蛋白脱乙酰化酶(HDAC)活性是必要的。这些结果表明,在细胞命运限制期间,PRC1在哺乳动物发展中发挥了关键作用的UB独立的抑制模式。

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