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Genome-wide analyses reveal a role of Polycomb in promoting hypomethylation of DNA methylation valleys

机译:基因组分析揭示了PolycomB在促进DNA甲基化谷的低甲基化方面的作用

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摘要

Abstract Background Previous studies showed that the majority of developmental genes are devoid of DNA methylation at promoters even when they are repressed. Such hypomethylated regions at developmental genes are unusually large and extend well beyond proximal promoters, forming DNA methylation valleys (DMVs) or DNA methylation canyons. However, it remains elusive how most developmental genes can evade DNA methylation regardless of their transcriptional states. Results We show that DMVs are hypomethylated in development and are highly conserved across vertebrates. Importantly, DMVs are hotspots of regulatory regions for key developmental genes and show low levels of deamination mutation rates. By analyzing a panel of DNA methylomes from mouse tissues, we identify a subset of DMVs that are dynamically methylated. These DMVs are strongly enriched for Polycomb-deposited H3K27me3 when the associated genes are silenced, and surprisingly show elevated DNA methylation upon gene activation. 4C-seq analyses indicates that Polycomb-bound DMVs form insulated and self-interacting chromatin domains. Further investigations show that DNA hypomethylation is better correlated with the binding of Polycomb than with H3K27me3. In support of a role of Polycomb in DMV hypomethylation, we observe aberrant methylation in DMVs in mouse embryonic stem cells deficient in the EED protein. Finally, we show that Polycomb regulates hypomethylation of DMVs likely through ten-eleven translocation (TET) proteins. Conclusions We show that Polycomb promotes the hypomethylation of DMVs near key developmental genes. These data reveal a delicate interplay between histone modifiers and DNA methylation, which contributes to their division at distinct gene targets, allowing lineage-specifying genes to largely maintain DNA methylation-free at regulatory elements.
机译:摘要背景既往研究表明,大多数发育基因的缺乏是DNA甲基化在促进即使他们压抑。在发育基因如低甲基化区域是非常大的并且远远超出近端启动子延伸,形成DNA甲基谷部(的DMV)或DNA甲基化峡谷。然而,最发育基因如何规避DNA甲基化无论其转录状态仍然遥遥无期。结果我们发现,动态管理视图在开发低甲基化和整个脊椎动物是高度保守的。重要的是,动态管理视图是关键的发展基因调控区的热点和显示的脱氨突变率较低的水平。通过分析DNA methylomes的从小鼠组织面板,我们确定被动态甲基化的DMV的子集。这些的DMV强烈富集梳沉积的H3K27me3当相关联的基因沉默,并且令人惊讶地显示出在基因活化升高DNA甲基化。图4C-SEQ分析表明,多梳结合的DMV形成绝缘和自我相互作用的染色质结构域。进一步的研究表明,DNA低甲基化是更好地梳的比H3K27me3的结合相关。在支持多梳的DMV低甲基化作用的,我们观察到在小鼠胚胎干细胞在EED蛋白缺乏的DMV异常甲基化。最后,我们表明,梳可能通过一○一一年易位(TET)蛋白调节的DMV的低甲基化。结论:我们发现,梳促进附近关键发育基因的DMV的低甲基化。这些数据在不同的基因靶揭示组蛋白修饰和DNA甲基化,这有助于之间微妙的相互作用,以他们的分裂,从而允许谱系指定基因在很大程度上保持DNA甲基化 - 自由在调控元件。

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