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重新评估组蛋白修饰酶及其相关染色质修饰在转录调控中的作用。

Reevaluating the roles of histone-modifying enzymes and their associated chromatin modifications in transcriptional regulation.

机构信息

Simpson Querrey Institute for Epigenetics, Department of Biochemistry and Molecular Genetics, Feinberg School of Medicine, Northwestern University, Chicago, IL, USA.

出版信息

Nat Genet. 2020 Dec;52(12):1271-1281. doi: 10.1038/s41588-020-00736-4. Epub 2020 Nov 30.

Abstract

Histone-modifying enzymes are implicated in the control of diverse DNA-templated processes including gene expression. Here, we outline historical and current thinking regarding the functions of histone modifications and their associated enzymes. One current viewpoint, based largely on correlative evidence, posits that histone modifications are instructive for transcriptional regulation and represent an epigenetic 'code'. Recent studies have challenged this model and suggest that histone marks previously associated with active genes do not directly cause transcriptional activation. Additionally, many histone-modifying proteins possess non-catalytic functions that overshadow their enzymatic activities. Given that much remains unknown regarding the functions of these proteins, the field should be cautious in interpreting loss-of-function phenotypes and must consider both cellular and developmental context. In this Perspective, we focus on recent progress relating to the catalytic and non-catalytic functions of the Trithorax-COMPASS complexes, Polycomb repressive complexes and Clr4/Suv39 histone-modifying machineries.

摘要

组蛋白修饰酶参与控制多种 DNA 模板过程,包括基因表达。在这里,我们概述了关于组蛋白修饰及其相关酶的功能的历史和当前观点。目前的一个观点主要基于相关性证据,认为组蛋白修饰对于转录调控具有指导意义,并代表一种表观遗传“密码”。最近的研究挑战了这一模型,并表明以前与活性基因相关的组蛋白标记并不能直接导致转录激活。此外,许多具有非催化功能的组蛋白修饰蛋白掩盖了它们的酶活性。鉴于这些蛋白的功能仍有许多未知,该领域在解释功能丧失表型时应谨慎,并必须考虑细胞和发育背景。在本观点中,我们重点关注与 Trithorax-COMPASS 复合物、Polycomb 抑制复合物和 Clr4/Suv39 组蛋白修饰机器的催化和非催化功能相关的最新进展。

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