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Acetyltransferase p300/CBP Associated Factor (PCAF)Regulates Crosstalk-Dependent Acetylation of Histone H3 by DistalSite Recognition

机译:乙酰基转移酶p300 / CBP相关因子(PCAF)通过远端调节组蛋白H3的串扰依赖性乙酰化网站识别

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摘要

Epigenetic regulation is directed, in part, by the correlated placement of histone post-translational modifications, but the mechanisms controlling correlated modifications are incompletely understood. Correlations arise from crosstalk among modifications and are frequently attributed to protein–protein interactions that recruit enzymes to existing histone modifications. Here we report the use of a peptide array to discover acetyltransferase-mediated crosstalks. We show that p300/CBP associated factor (PCAF)/GCN5 activity depends on the presence of a distal arginine residue of its histone H3 substrate. Modifications to H3 Arg8 decrease PCAF acetylation of H3 Lys14, and kinetic data indicate that arginine citrullination has the strongest effect in decreasing acetylation. Mutagenesis experiments demonstrate that PCAF specifically interprets H3 Arg8 modifications through interaction with residue Tyr640 on the surface of its catalytic domain, and this interaction regulates Lys14 acetylation by substrate discrimination. PCAF discriminates modified peptides as well as semisynthetic proteinsand reconstituted nucleosomes bearing Arg8 modifications. Together,this work describes a method for systematically mapping crosstalksand illustrates its application to the discovery and elucidation ofnovel PCAF crosstalks.
机译:表观遗传调控部分是由组蛋白翻译后修饰的相关位置决定的,但控制相关修饰的机制尚不完全清楚。相关性是由于修饰之间的串扰引起的,通常归因于蛋白质与蛋白质之间的相互作用,这种相互作用将酶募集到现有的组蛋白修饰中。在这里,我们报告使用肽阵列来发现乙酰基转移酶介导的串扰。我们表明,p300 / CBP相关因子(PCAF)/ GCN5活性取决于其组蛋白H3底物的远端精氨酸残基的存在。对H3 Arg8的修饰降低了H3 Lys14的PCAF乙酰化,动力学数据表明精氨酸瓜氨酸化在减少乙酰化方面具有最强的作用。诱变实验表明,PCAF通过与催化结构域表面上的残基Tyr640相互作用来特异性解释H3 Arg8修饰,并且这种相互作用通过底物识别调节Lys14乙酰化。 PCAF区分修饰的肽和半合成蛋白和带有Arg8修饰的重组核小体。一起,这项工作描述了一种系统地绘制串扰的方法并说明了其在发现和阐明新颖的PCAF串扰。

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