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Systems Level Analysis of Histone H3 Post-translational Modifications (PTMs) Reveals Features of PTM Crosstalk in Chromatin Regulation

机译:组蛋白H3翻译后修饰(PTM)的系统级分析揭示了染色质调节中PTM串扰的特征

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摘要

Histones are abundant chromatin constituents carrying numerous post-translational modifications (PTMs). Such PTMs mediate a variety of biological functions, including recruitment of enzymatic readers, writers and erasers that modulate DNA replication, transcription and repair. Individual histone molecules contain multiple coexisting PTMs, some of which exhibit crosstalk, i.e. coordinated or mutually exclusive activities. Here, we present an integrated experimental and computational systems level molecular characterization of histone PTMs and PTM crosstalk. Using wild type and engineered mouse embryonic stem cells (mESCs) knocked out in components of the Polycomb Repressive Complex 2 (PRC2, Suz12−/−), PRC1 (Ring1A/B−/−) and (Dnmt1/3a/3b−/−) we performed comprehensive PTM analysis of histone H3 tails (50 aa) by utilizing quantitative middle-down proteome analysis by tandem mass spectrometry. We characterized combinatorial PTM features across the four mESC lines and then applied statistical data analysis to predict crosstalk between histone H3 PTMs. We detected an overrepresentation of positive crosstalk (codependent marks) between adjacent mono-methylated and acetylated marks, and negative crosstalk (mutually exclusive marks) among most of the seven characterized di- and tri-methylated lysine residues in the H3 tails. We report novel features of PTM interplay involving hitherto poorly characterized arginine methylation and lysine methylation sites, including H3R2me, H3R8me and H3K37me. Integration of the H3 data with RNAseq data by coabundance clustering analysis of histone PTMs and histone modifying enzymes revealed correlations between PTM and enzyme levels. We conclude that middle-down proteomics is a powerful tool to determine conserved or dynamic interdependencies between histone marks, which paves the way for detailed investigations of the histone code. Histone H3 PTM data is publicly available in the CrossTalkDB repository at .
机译:组蛋白是丰富的染色质成分,带有大量的翻译后修饰(PTM)。此类PTM介导各种生物学功能,包括募集可调节DNA复制,转录和修复作用的酶促阅读器,书写器和擦除器。单个组蛋白分子包含多个共存的PTM,其中一些表现出串扰,即协调或互斥的活性。在这里,我们介绍了组蛋白PTM和PTM串扰的集成实验和计算系统级分子表征。使用野生型和工程化的小鼠胚胎干细胞(mESC),敲除Polycomb Repressive Complex 2(PRC2,Suz12 -/-),PRC1(Ring1A / B -/-< / sup>)和(Dnmt1 / 3a / 3b -/-),我们通过串联质谱法对中下蛋白质组进行定量分析,对组蛋白H3尾巴(50aa)进行了全面的PTM分析。我们表征了四个mESC线的组合PTM功能,然后应用统计数据分析来预测组蛋白H3 PTM之间的串扰。我们检测到在H3尾巴中七个特征化的二甲基和三甲基化赖氨酸残基中的大多数中,相邻的单甲基化和乙酰化标记之间存在正串扰(共依赖性标记),而负串扰(相互排斥标记)过多。我们报告的PTM相互作用的新颖特征涉及迄今表征不佳的精氨酸甲基化和赖氨酸甲基化位点,包括H3R2me,H3R8me和H3K37me。 H3数据与RNAseq数据的整合,通过对组蛋白PTM和组蛋白修饰酶进行的丰度聚类分析揭示了PTM和酶水平之间的相关性。我们得出的结论是,中下蛋白质组学是确定组蛋白标记之间保守或动态相互依存关系的有力工具,为详细研究组蛋白代码铺平了道路。 Histone H3 PTM数据可在CrossTalkDB存储库中找到,网址为。

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