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MacroH2A组蛋白变体维持核组织和异染色质结构。

MacroH2A histone variants maintain nuclear organization and heterochromatin architecture.

作者信息

Douet Julien, Corujo David, Malinverni Roberto, Renauld Justine, Sansoni Viola, Posavec Marjanović Melanija, Cantariño Neus, Valero Vanesa, Mongelard Fabien, Bouvet Philippe, Imhof Axel, Thiry Marc, Buschbeck Marcus

机构信息

Josep Carreras Leukaemia Research Institute (IJC), Campus ICO - Germans Trias i Pujol, Campus Can Ruti, Badalona 08916, Spain.

Program of Predictive and Personalized Medicine of Cancer, Germans Trias and Pujol Research Institute (PMPPC-IGTP), Campus Can Ruti, Badalona 08916, Spain.

出版信息

J Cell Sci. 2017 May 1;130(9):1570-1582. doi: 10.1242/jcs.199216. Epub 2017 Mar 10.

DOI:10.1242/jcs.199216
PMID:28283545
Abstract

Genetic loss-of-function studies on development, cancer and somatic cell reprogramming have suggested that the group of macroH2A histone variants might function through stabilizing the differentiated state by a yet unknown mechanism. Here, we present results demonstrating that macroH2A variants have a major function in maintaining nuclear organization and heterochromatin architecture. Specifically, we find that a substantial amount of macroH2A is associated with heterochromatic repeat sequences. We further identify macroH2A on sites of interstitial heterochromatin decorated by histone H3 trimethylated on K9 (H3K9me3). Loss of macroH2A leads to major defects in nuclear organization, including reduced nuclear circularity, disruption of nucleoli and a global loss of dense heterochromatin. Domains formed by DNA repeat sequences are disorganized, expanded and fragmented, and mildly re-expressed when depleted of macroH2A. At the molecular level, we find that macroH2A is required for the interaction of repeat sequences with the nucleostructural protein lamin B1. Taken together, our results argue that a major function of macroH2A histone variants is to link nucleosome composition to higher-order chromatin architecture.

摘要

对发育、癌症和体细胞重编程的基因功能丧失研究表明,macroH2A组蛋白变体可能通过一种未知机制稳定分化状态来发挥作用。在此,我们展示的结果表明,macroH2A变体在维持核组织和异染色质结构方面具有主要功能。具体而言,我们发现大量的macroH2A与异染色质重复序列相关。我们进一步在由赖氨酸9三甲基化的组蛋白H3(H3K9me3)修饰的间质异染色质位点上鉴定出macroH2A。macroH2A的缺失会导致核组织出现重大缺陷,包括核圆形度降低、核仁破坏以及致密异染色质的整体丧失。由DNA重复序列形成的结构域变得无序、扩张和碎片化,并且在macroH2A缺失时会轻度重新表达。在分子水平上,我们发现macroH2A是重复序列与核结构蛋白核纤层蛋白B1相互作用所必需的。综上所述,我们的结果表明,macroH2A组蛋白变体的主要功能是将核小体组成与高阶染色质结构联系起来。

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