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连接组蛋白变体的翻译后修饰及其与细胞机制的关联。

Post-translational modifications of the linker histone variants and their association with cell mechanisms.

作者信息

Wood Christopher, Snijders Ambrosius, Williamson James, Reynolds Colin, Baldwin John, Dickman Mark

机构信息

School of Pharmacy and Biomolecular Sciences, Liverpool John Moores University, UK.

出版信息

FEBS J. 2009 Jul;276(14):3685-97. doi: 10.1111/j.1742-4658.2009.07079.x. Epub 2009 May 28.

Abstract

In recent years, a considerable amount of research has been focused on establishing the epigenetic mechanisms associated with DNA and the core histones. This effort is driven by the fact that epigenetics is intimately involved with genomics in a whole range of molecular processes. However, there is now a consensus that the epigenetics of the linker histones are just as important. The result of that consensus is that the post-translational modifications (PTMs) for most of the linker histone variants in human and mouse have now been established by a number of experimental techniques, foremost of which is mass spectrometry (MS). MS was also used by our group to establish the PTMs of the linker histone variants in chicken erythrocytes. Although it is now known which types of PTM occur at particular locations on the linker histone variants, there is still a large gap in the knowledge of how this data relates to function. The focus of this review is an analysis of the PTM data for the linker histones from several species, but with an emphasis on human, mouse, and chicken. Our analysis reveals that certain PTMs can be clearly correlated with specific functions of the linker histones in particular cell types, and that unique PTM patterns exist for different cell types.

摘要

近年来,大量研究聚焦于确定与DNA和核心组蛋白相关的表观遗传机制。这一努力是由表观遗传学在一系列分子过程中与基因组学密切相关这一事实所驱动的。然而,现在人们已达成共识,即连接组蛋白的表观遗传学同样重要。这一共识的结果是,人类和小鼠中大多数连接组蛋白变体的翻译后修饰(PTM)现已通过多种实验技术确定,其中最重要的是质谱法(MS)。我们小组也使用质谱法来确定鸡红细胞中连接组蛋白变体的PTM。尽管现在已知在连接组蛋白变体的特定位置会发生哪些类型的PTM,但在这些数据与功能之间的关系方面,仍存在很大的知识空白。本综述的重点是分析来自多个物种的连接组蛋白的PTM数据,但重点是人类、小鼠和鸡。我们的分析表明,某些PTM可以与特定细胞类型中连接组蛋白的特定功能明显相关,并且不同细胞类型存在独特的PTM模式。

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