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H2A.Z 和 H4 乙酰化的组合在转录激活过程中招募 Brd2 到染色质上。

A combination of H2A.Z and H4 acetylation recruits Brd2 to chromatin during transcriptional activation.

机构信息

Ontario Cancer Institute, Toronto, Canada.

出版信息

PLoS Genet. 2012;8(11):e1003047. doi: 10.1371/journal.pgen.1003047. Epub 2012 Nov 8.

Abstract

H2A.Z is an essential histone variant that has been implicated to have multiple chromosomal functions. To understand how H2A.Z participates in such diverse activities, we sought to identify downstream effector proteins that are recruited to chromatin via H2A.Z. For this purpose, we developed a nucleosome purification method to isolate H2A.Z-containing nucleosomes from human cells and used mass spectrometry to identify the co-purified nuclear proteins. Through stringent filtering, we identified the top 21 candidates, many of which have conserved structural motifs that bind post-translationally modified histones. We further validated the biological significance of one such candidate, Brd2, which is a double-bromodomain-containing protein known to function in transcriptional activation. We found that Brd2's preference for H2A.Z nucleosomes is mediated through a combination of hyperacetylated H4 on these nucleosomes, as well as additional features on H2A.Z itself. In addition, comparison of nucleosomes containing either H2A.Z-1 or H2A.Z-2 isoforms showed that significantly more Brd2 co-purifies with the former, suggesting these two isoforms engage different downstream effector proteins. Consistent with these biochemical analyses, we found that Brd2 is recruited to AR-regulated genes in an H2A.Z-dependent manner and that chemical inhibition of Brd2 recruitment greatly inhibits AR-regulated gene expression. Taken together, we propose that Brd2 is a key downstream mediator that links H2A.Z and transcriptional activation of AR-regulated genes. Moreover, this study validates the approach of using proteomics to identify nucleosome-interacting proteins in order to elucidate downstream mechanistic functions associated with the histone variant H2A.Z.

摘要

H2A.Z 是一种必需的组蛋白变体,其被认为具有多种染色体功能。为了了解 H2A.Z 如何参与如此多样化的活动,我们试图鉴定通过 H2A.Z 募集到染色质的下游效应蛋白。为此,我们开发了一种核小体纯化方法,从人细胞中分离含有 H2A.Z 的核小体,并使用质谱鉴定共纯化的核蛋白。通过严格筛选,我们鉴定出前 21 个候选蛋白,其中许多具有保守的结构基序,可与翻译后修饰的组蛋白结合。我们进一步验证了其中一个候选蛋白 Brd2 的生物学意义,Brd2 是一种双溴结构域蛋白,已知在转录激活中发挥作用。我们发现,Brd2 对 H2A.Z 核小体的偏好是通过这些核小体上 H4 的高度乙酰化以及 H2A.Z 本身的其他特征来介导的。此外,比较含有 H2A.Z-1 或 H2A.Z-2 同工型的核小体表明,Brd2 与前者的共沉淀显著更多,这表明这两种同工型与不同的下游效应蛋白结合。与这些生化分析一致,我们发现 Brd2 以 H2A.Z 依赖的方式被募集到 AR 调节的基因上,并且 Brd2 募集的化学抑制极大地抑制了 AR 调节的基因表达。总之,我们提出 Brd2 是连接 H2A.Z 和 AR 调节基因转录激活的关键下游介质。此外,这项研究验证了使用蛋白质组学鉴定核小体相互作用蛋白的方法,以阐明与组蛋白变体 H2A.Z 相关的下游机制功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dae/3493454/0ba864d31172/pgen.1003047.g001.jpg

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