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新生 RNA 拮抗了一组调控蛋白与染色质的相互作用。

Nascent RNA antagonizes the interaction of a set of regulatory proteins with chromatin.

机构信息

UCL Cancer Institute and Cancer Research UK UCL Centre, University College London (UCL), London WC1E 6BT, UK.

Institute of Functional Epigenetics, Helmholtz Zentrum München, Neuherberg 85764, Germany.

出版信息

Mol Cell. 2021 Jul 15;81(14):2944-2959.e10. doi: 10.1016/j.molcel.2021.05.026. Epub 2021 Jun 23.

Abstract

A number of regulatory factors are recruited to chromatin by specialized RNAs. Whether RNA has a more general role in regulating the interaction of proteins with chromatin has not been determined. We used proteomics methods to measure the global impact of nascent RNA on chromatin in embryonic stem cells. Surprisingly, we found that nascent RNA primarily antagonized the interaction of chromatin modifiers and transcriptional regulators with chromatin. Transcriptional inhibition and RNA degradation induced recruitment of a set of transcriptional regulators, chromatin modifiers, nucleosome remodelers, and regulators of higher-order structure. RNA directly bound to factors, including BAF, NuRD, EHMT1, and INO80 and inhibited their interaction with nucleosomes. The transcriptional elongation factor P-TEFb directly bound pre-mRNA, and its recruitment to chromatin upon Pol II inhibition was regulated by the 7SK ribonucleoprotein complex. We postulate that by antagonizing the interaction of regulatory proteins with chromatin, nascent RNA links transcriptional output with chromatin composition.

摘要

许多调节因子通过特定的 RNA 被招募到染色质上。RNA 是否在调节蛋白质与染色质相互作用方面具有更普遍的作用尚不确定。我们使用蛋白质组学方法来测量胚胎干细胞中新生 RNA 对染色质的全局影响。令人惊讶的是,我们发现新生 RNA 主要拮抗染色质修饰因子和转录调节剂与染色质的相互作用。转录抑制和 RNA 降解诱导了一组转录调节剂、染色质修饰因子、核小体重塑因子和高级结构调节剂的募集。RNA 直接与因子结合,包括 BAF、NuRD、EHMT1 和 INO80,并抑制它们与核小体的相互作用。转录延伸因子 P-TEFb 直接与前体 RNA 结合,其在 Pol II 抑制时向染色质的募集受到 7SK 核糖核蛋白复合物的调节。我们假设,通过拮抗调节蛋白与染色质的相互作用,新生 RNA 将转录产物与染色质组成联系起来。

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