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首页> 外文期刊>Nature cell biology >Nanog and Oct4 associate with unique transcriptional repression complexes in embryonic stem cells
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Nanog and Oct4 associate with unique transcriptional repression complexes in embryonic stem cells

机译:Nanog和Oct4与胚胎干细胞中独特的转录抑制复合物相关

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Nanog and Oct4 are essential transcription factors that regulate self-renewal and pluripotency of ES cells. However, the mechanisms by which Nanog and Oct4 modulate ES cell fate remain unknown. Through characterization of endogenous Nanog and Oct4 protein complexes in mouse ES cells, we found that these transcription factors interact with each other and associate with proteins from multiple repression complexes, including the NuRD, Sin3A and PmI complexes. In addition, Nanog, Oct4 and repressor proteins co-occupy Nanog-target genes in mouse ES cells, suggesting that Nanog and Oct4 together may communicate with distinct repression complexes to control gene transcription. To our surprise, of the various core components in the NuRD complex with which Nanog and Oct4 interact, Mta1 was preferred, whereas Mbd3 and Rbbp7 were either absent or present at sub-stoichiometric levels. We named this unique Hdac1/2-and Mta1/2-containing complex NODE (for Nanog and Oct4 associated deacetylase). Interestingly, NODE contained histone deacetylase (HDAC) activity that seemed to be comparable to NuRD, and retained its association with Nanog and Oct4 in Mbd3(-/-)ES cells. In contrast to Mbd3 loss-of-function, knockdown of NODE subunits led to increased expression of developmentally regulated genes and ES-cell differentiation. Our data collectively suggest that Nanog and Oct4 associate with unique repressor complexes on their target genes to control ES cell fate.
机译:Nanog和Oct4是调节ES细胞自我更新和多能性的重要转录因子。但是,Nanog和Oct4调控ES细胞命运的机制仍然未知。通过表征小鼠ES细胞中的内源性Nanog和Oct4蛋白复合物,我们发现这些转录因子彼此相互作用并与多种阻遏复合物(包括NuRD,Sin3A和PmI复合物)中的蛋白质缔合。此外,Nanog,Oct4和阻遏蛋白共同占据了小鼠ES细胞中的Nanog靶基因,这表明Nanog和Oct4一起可能与不同的阻遏复合体通讯,以控制基因转录。令我们惊讶的是,Nanog和Oct4相互作用的NuRD复合物中的各种核心成分中,首选Mta1,而不存在Mbd3和Rbbp7或以低于化学计量的水平存在。我们将这种独特的Hdac1 / 2和Mta1 / 2含复合物命名为NODE(用于Nanog和Oct4相关的脱乙酰基酶)。有趣的是,NODE包含的组蛋白脱乙酰基酶(HDAC)活性似乎与NuRD相当,并且在Mbd3(-/-)ES细胞中保留了与Nanog和Oct4的缔合。与Mbd3功能丧失相反,NODE亚基的敲低导致发育调控基因的表达增加和ES细胞分化。我们的数据共同表明,Nanog和Oct4与靶基因上独特的阻遏物复合物相关联,以控制ES细胞的命运。

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