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H2A.Z 与 H3K9 甲基化在调控 HP1α 与含连接组蛋白的染色质结合中的相互作用。

The interplay between H2A.Z and H3K9 methylation in regulating HP1α binding to linker histone-containing chromatin.

机构信息

Department of Genome Sciences, The John Curtin School of Medical Research, The Australian National University, ACT 2601, Australia.

出版信息

Nucleic Acids Res. 2018 Oct 12;46(18):9353-9366. doi: 10.1093/nar/gky632.

Abstract

One of the most intensively studied chromatin binding factors is HP1α. HP1α is associated with silenced, heterochromatic regions of the genome and binds to H3K9me3. While H3K9me3 is necessary for HP1α recruitment to heterochromatin, it is becoming apparent that it is not sufficient suggesting that additional factors are involved. One candidate proposed as a potential regulator of HP1α recruitment is the linker histone H1.4. Changes to the underlying make-up of chromatin, such as the incorporation of the histone variant H2A.Z, has also been linked with regulating HP1 binding to chromatin. Here, we rigorously dissected the effects of H1.4, H2A.Z and H3K9me3 on the nucleosome binding activity of HP1α in vitro employing arrays, mononucleosomes and nucleosome core particles. Unexpectedly, histone H1.4 impedes the binding of HP1α but strikingly, this inhibition is partially relieved by the incorporation of both H2A.Z and H3K9me3 but only in the context of arrays or nucleosome core particles. Our data suggests that there are two modes of interaction of HP1α with nucleosomes. The first primary mode is through interactions with linker DNA. However, when linker DNA is missing or occluded by linker histones, HP1α directly interacts with the nucleosome core and this interaction is enhanced by H2A.Z with H3K9me3.

摘要

一种研究得最为深入的染色质结合因子是 HP1α。HP1α 与基因组中沉默的异染色质区域相关联,并与 H3K9me3 结合。虽然 H3K9me3 对于 HP1α 向异染色质的募集是必要的,但越来越明显的是,它并不足以表明还有其他因素参与其中。一个被提议为 HP1α 募集的潜在调节因子的候选者是连接组蛋白 H1.4。染色质的基本组成的变化,如组蛋白变体 H2A.Z 的掺入,也与调节 HP1 与染色质的结合有关。在这里,我们使用阵列、单核小体和核小体核心颗粒在体外严格剖析了 H1.4、H2A.Z 和 H3K9me3 对 HP1α 核小体结合活性的影响。出乎意料的是,组蛋白 H1.4 阻碍了 HP1α 的结合,但引人注目的是,这种抑制作用部分通过 H2A.Z 和 H3K9me3 的掺入得到缓解,但仅在阵列或核小体核心颗粒的情况下。我们的数据表明,HP1α 与核小体有两种相互作用模式。第一种主要模式是通过与连接 DNA 的相互作用。然而,当连接 DNA 缺失或被连接组蛋白封闭时,HP1α 直接与核小体核心相互作用,这种相互作用通过 H2A.Z 和 H3K9me3 增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c341/6182156/20ba3eb13790/gky632fig1.jpg

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