Point mutations in an epigenetic factor lead to multiple types of bone tumors: role of H3.3 histone variant in bone development and disease.

BoneKEy reports Pub Date : 2015-07-01 eCollection Date: 2015-01-01 DOI:10.1038/bonekey.2015.84
Shigeaki Kato, Takeaki Ishii, Alexander Kouzmenko
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引用次数: 7

Abstract

Coordinated post-translational modifications (PTMs) of nucleosomal histones emerge as a key mechanism of gene regulation by defining chromatin configuration. Patterns of histone modifications vary in different cells and constitute core elements of cell-specific epigenomes. Recently, in addition to canonical histone proteins produced during the S phase of cell cycle, several non-canonical histone variants have been identified and shown to express in a DNA replication-independent manner. These histone variants generate diversity in nucleosomal structures and add further complexity to mechanisms of epigenetic regulation. Cell-specific functions of histone variants remain to be determined. Several recent studies reported an association between some point mutations in the non-canonical histone H3.3 and particular types of brain and bone tumors. This suggests a possibility of differential physiological effects of histone variants in different cells and tissues, including bone. In this review, we outline the roles of histone variants and their PTMs in the epigenetic regulation of chromatin structure and discuss possible mechanisms of biological effects of the non-canonical histone mutations found in bone tumors on tumorigenesis in differentiating bone stem cells.

一个表观遗传因子的点突变导致多种类型的骨肿瘤:H3.3组蛋白变异在骨发育和疾病中的作用
核小体组蛋白的协调翻译后修饰(PTMs)通过定义染色质结构而成为基因调控的关键机制。组蛋白修饰的模式在不同的细胞中有所不同,并构成细胞特异性表观基因组的核心要素。最近,除了在细胞周期S期产生的规范组蛋白外,还发现了几种非规范组蛋白变体,并显示它们以DNA复制无关的方式表达。这些组蛋白变异产生核小体结构的多样性,并进一步增加表观遗传调控机制的复杂性。组蛋白变体的细胞特异性功能仍有待确定。最近的几项研究报道了非规范组蛋白H3.3的一些点突变与特定类型的脑和骨肿瘤之间的关联。这表明组蛋白变异在不同细胞和组织(包括骨)中可能有不同的生理作用。在这篇综述中,我们概述了组蛋白变异及其PTMs在染色质结构表观遗传调控中的作用,并讨论了骨肿瘤中发现的非规范组蛋白突变对分化骨干细胞发生的生物学作用的可能机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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