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转录抑制的高分辨率图谱。

A high-resolution map of transcriptional repression.

作者信息

Liang Ziwei, Brown Karen E, Carroll Thomas, Taylor Benjamin, Vidal Isabel Ferreirós, Hendrich Brian, Rueda David, Fisher Amanda G, Merkenschlager Matthias

机构信息

Lymphocyte Development Group, MRC London Institute of Medical Sciences, Faculty of Medicine, Imperial College London, London, United Kingdom.

Epigenetics Section, MRC London Institute of Medical Sciences, Faculty of Medicine, Imperial College London, London, United Kingdom.

出版信息

Elife. 2017 Mar 20;6:e22767. doi: 10.7554/eLife.22767.

Abstract

Turning genes on and off is essential for development and homeostasis, yet little is known about the sequence and causal role of chromatin state changes during the repression of active genes. This is surprising, as defective gene silencing underlies developmental abnormalities and disease. Here we delineate the sequence and functional contribution of transcriptional repression mechanisms at high temporal resolution. Inducible entry of the NuRD-interacting transcriptional regulator Ikaros into mouse pre-B cell nuclei triggered immediate binding to target gene promoters. Rapid RNAP2 eviction, transcriptional shutdown, nucleosome invasion, and reduced transcriptional activator binding required chromatin remodeling by NuRD-associated Mi2beta/CHD4, but were independent of HDAC activity. Histone deacetylation occurred after transcriptional repression. Nevertheless, HDAC activity contributed to stable gene silencing. Hence, high resolution mapping of transcriptional repression reveals complex and interdependent mechanisms that underpin rapid transitions between transcriptional states, and elucidates the temporal order, functional role and mechanistic separation of NuRD-associated enzymatic activities.

摘要

基因的开启和关闭对于发育和体内平衡至关重要,然而,关于活跃基因抑制过程中染色质状态变化的顺序和因果作用,我们却知之甚少。这令人惊讶,因为基因沉默缺陷是发育异常和疾病的基础。在这里,我们以高时间分辨率描绘了转录抑制机制的顺序和功能贡献。与NuRD相互作用的转录调节因子Ikaros可诱导进入小鼠前B细胞核,从而立即与靶基因启动子结合。快速的RNA聚合酶II(RNAP2)驱逐、转录终止、核小体侵入以及转录激活因子结合减少,需要与NuRD相关的Mi2β/CHD4进行染色质重塑,但与组蛋白去乙酰化酶(HDAC)活性无关。组蛋白去乙酰化发生在转录抑制之后。尽管如此,HDAC活性有助于稳定的基因沉默。因此,转录抑制的高分辨率图谱揭示了复杂且相互依赖的机制,这些机制是转录状态之间快速转变的基础,并阐明了与NuRD相关的酶活性的时间顺序、功能作用和机制分离。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/42a2/5373822/b6534e03e85d/elife-22767-fig1.jpg

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