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首页> 外文期刊>Molecular & cellular proteomics: MCP >Large Scale Analysis of Co-existing Post-translational Modifications in Histone Tails Reveals Global Fine Structure of Cross-talk
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Large Scale Analysis of Co-existing Post-translational Modifications in Histone Tails Reveals Global Fine Structure of Cross-talk

机译:组蛋白尾巴中共存的翻译后修饰的大规模分析揭示了串扰的整体精细结构

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摘要

Mass spectrometry (MS) is a powerful analytical method for the identification and quantification of co-existing post-translational modifications in histone proteins. One of the most important challenges in current chromatin biology is to characterize the relationships between co-existing histone marks, the order and hierarchy of their deposition, and their distinct biological functions. We developed the database CrossTalkDB to organize observed and reported coexisting histone marks as revealed by MS experiments of histone proteins and their derived peptides. Statistical assessment revealed sample-specific patterns for the co-frequency of histone post-translational modifications. We implemented a new method to identify positive and negative interplay between pairs of methylation and acetylation marks in proteins. Many of the detected features were conserved between different cell types or exist across species, thereby revealing general rules for cross-talk between histone marks. The observed features are in accordance with previously reported examples of cross-talk. We observed novel types of interplay among acetylated residues, revealing positive cross-talk between nearby acetylated sites but negative cross-talk for distant ones, and for discrete methylation states at Lys-9, Lys-27, and Lys-36 of histone H3, suggesting a more differentiated functional role of methylation beyond the general expectation of enhanced activity at higher methylation states.
机译:质谱(MS)是一种强大的分析方法,用于鉴定和定量组蛋白中共存的翻译后修饰。当前染色质生物学的最重要挑战之一是表征共存的组蛋白标记,其沉积的顺序和层次以及它们独特的生物学功能之间的关系。我们开发了数据库CrossTalkDB,以组织观察到的和报告的组蛋白标记并存,这是通过组蛋白蛋白质及其衍生肽的MS实验揭示的。统计评估揭示了组蛋白翻译后修饰同频的样品特异性模式。我们实施了一种新方法来鉴定蛋白质中甲基化和乙酰化标记对之间的正负相互作用。许多检测到的特征在不同细胞类型之间是保守的,或者在物种间存在,从而揭示了组蛋白标记之间串扰的一般规则。观察到的特征与先前报道的串扰示例一致。我们观察到了乙酰化残基之间的新型相互作用,揭示了附近乙酰化位点之间的正串扰,而远处的负串扰,以及组蛋白H3的Lys-9,Lys-27和Lys-36的离散甲基化状态,提示甲基化在更高的甲基化状态下活性增强的一般预期之外的功能差异更大。

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