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Jmjd2c facilitates the assembly of essential enhancer-protein complexes at the onset of embryonic stem cell differentiation

机译:JMJD2C在胚胎干细胞分化的发作时促进基本增强剂 - 蛋白复合物的组装

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Jmjd2 H3K9 demethylases cooperate in promoting mouse embryonic stem cell (ESC) identity. However, little is known about their importance at the exit of ESC pluripotency. Here, we reveal that Jmjd2c facilitates this process by stabilising the assembly of mediator-cohesin complexes at lineage-specific enhancers. Functionally, we show that Jmjd2c is required in ESCs to initiate appropriate gene expression programs upon somatic multi-lineage differentiation. In the absence of Jmjd2c, differentiation is stalled at an early post-implantation epiblast-like stage, while Jmjd2c-knockout ESCs remain capable of forming extra-embryonic endoderm derivatives. Dissection of the underlying molecular basis revealed that Jmjd2c is re-distributed to lineage-specific enhancers during ESC priming for differentiation. Interestingly, Jmjd2c-bound enhancers are co-occupied by the H3K9-methyltransferase G9a (also known as Ehmt2), independently of its H3K9-modifying activity. Loss of Jmjd2c abrogates G9a recruitment and further destabilises loading of the mediator and cohesin components Med1 and Smc1a at newly activated and poised enhancers in ESC-derived epiblast-like cells. These findings unveil Jmjd2c and G9a as novel enhancerassociated factors, and implicate Jmjd2c as a molecular scaffold for the assembly of essential enhancer-protein complexes with an impact on timely gene activation.
机译:JMJD2 H3K9去甲基酶在促进小鼠胚胎干细胞(ESC)身份中。然而,关于他们在ESC多能性出口的重要性知之甚少。在这里,我们揭示了JMJD2C通过稳定在谱系特异性增强剂的介质 - 休肽复合物的组装来促进该过程。在功能上,我们表明ESC中需要JMJD2C,以在体细胞多谱系分化时发起适当的基因表达程序。在没有JMJD2C的情况下,在早期植入后的外部血管上停使分化,而JMJD2C敲除ESC仍然能够形成胚胎内胚层衍生物。底层分子的解剖显示,在ESC引发时将JMJD2C重新分布到谱系特异性增强子以进行分化。有趣的是,JMJD2C-结合的增强剂由H3K9-甲基转移酶G9A(也称为EHMT2)共同占据,其独立于其H3K9改性活性。在ESC衍生的表血管样细胞中,JMJD2C废弃G9A招募,并进一步稳定地稳定介质介质和CONENIN组分MED1和SMC1A的升级。这些发现揭示了JMJD2C和G9A作为新颖的增强的因子,并将JMJD2C视为用于组装基本增强剂 - 蛋白复合物的分子支架,其具有关于及时基因活化的影响。

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