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移动标记:酵母中的动态组蛋白修饰

Moving marks: dynamic histone modifications in yeast.

作者信息

Krebs Jocelyn E

机构信息

University of Alaska Anchorage, 3211 Providence Drive, Anchorage, AK 99508, USA.

出版信息

Mol Biosyst. 2007 Sep;3(9):590-7. doi: 10.1039/b703923a. Epub 2007 Jul 26.

Abstract

Posttranslational modifications of histones, both in the tails and in the globular cores, alter the functional landscape of chromatin by modulating DNA accessibility and chromatin stability, and by providing an enormous variety of alternative interaction surfaces for trans-acting factors. Complex patterns of acetylation, methylation, phosphorylation, ubiquitylation (and others) result in spatial domains of meaningful chromatin modifications, often referred to as the histone code. Whole genome studies have uncovered striking genome-wide patterns of specific modifications, and individual modifications have been linked to a variety of functional consequences for transcription, replication and repair. A key aspect of the role of histone modifications, however, is their dynamic nature-the precise timing of the addition and removal of specific marks is an essential part of the histone code. This review will highlight examples from budding yeast that illustrate the importance of these dynamic modifications in controlling transcription and repair.

摘要

组蛋白的翻译后修饰,无论是在尾部还是球状核心区域,都通过调节DNA可及性和染色质稳定性,并为反式作用因子提供大量不同的相互作用表面,从而改变染色质的功能格局。乙酰化、甲基化、磷酸化、泛素化(以及其他修饰)的复杂模式导致了有意义的染色质修饰的空间结构域,通常被称为组蛋白密码。全基因组研究揭示了特定修饰在全基因组范围内的显著模式,并且单个修饰已与转录、复制和修复的多种功能后果相关联。然而,组蛋白修饰作用的一个关键方面是其动态性质——特定标记添加和去除的精确时间是组蛋白密码的重要组成部分。本综述将重点介绍来自芽殖酵母的例子,以说明这些动态修饰在控制转录和修复中的重要性。

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