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通过组蛋白H4磷酸化对转录和DNA修复中NuA4组蛋白乙酰转移酶活性的调控。

Regulation of NuA4 histone acetyltransferase activity in transcription and DNA repair by phosphorylation of histone H4.

作者信息

Utley Rhea T, Lacoste Nicolas, Jobin-Robitaille Olivier, Allard Stéphane, Côté Jacques

机构信息

Laval University Cancer Research Center, Hôtel-Dieu de Québec (CHUQ), 9 McMahon Street, Quebec City, QC, Canada G1R 2J6.

出版信息

Mol Cell Biol. 2005 Sep;25(18):8179-90. doi: 10.1128/MCB.25.18.8179-8190.2005.

Abstract

The NuA4 complex is a histone H4/H2A acetyltransferase involved in transcription and DNA repair. While histone acetylation is important in many processes, it has become increasingly clear that additional histone modifications also play a crucial interrelated role. To understand how NuA4 action is regulated, we tested various H4 tail peptides harboring known modifications in HAT assays. While dimethylation at arginine 3 (R3M) had little effect on NuA4 activity, phosphorylation of serine 1 (S1P) strongly decreased the ability of the complex to acetylate H4 peptides. However, R3M in combination with S1P alleviates the repression of NuA4 activity. Chromatin from cells treated with DNA damage-inducing agents shows an increase in phosphorylation of serine 1 and a concomitant decrease in H4 acetylation. We found that casein kinase 2 phosphorylates histone H4 and associates with the Rpd3 deacetylase complex, demonstrating a physical connection between phosphorylation of serine 1 and unacetylated H4 tails. Chromatin immunoprecipitation experiments also link local phosphorylation of H4 with its deacetylation, during both transcription and DNA repair. Time course chromatin immunoprecipitation data support a model in which histone H4 phosphorylation occurs after NuA4 action during double-strand break repair at the step of chromatin restoration and deacetylation. These findings demonstrate that H4 phospho-serine 1 regulates chromatin acetylation by the NuA4 complex and that this process is important for normal gene expression and DNA repair.

摘要

NuA4复合物是一种参与转录和DNA修复的组蛋白H4/H2A乙酰转移酶。虽然组蛋白乙酰化在许多过程中都很重要,但越来越清楚的是,其他组蛋白修饰也起着至关重要的相互关联作用。为了了解NuA4的作用是如何被调控的,我们在HAT分析中测试了各种带有已知修饰的H4尾肽。虽然精氨酸3处的二甲基化(R3M)对NuA4活性影响很小,但丝氨酸1的磷酸化(S1P)强烈降低了该复合物乙酰化H4肽的能力。然而,R3M与S1P结合可减轻对NuA4活性的抑制。用DNA损伤诱导剂处理的细胞的染色质显示丝氨酸1的磷酸化增加,同时H4乙酰化减少。我们发现酪蛋白激酶2使组蛋白H4磷酸化并与Rpd3去乙酰化酶复合物结合,这表明丝氨酸1的磷酸化与未乙酰化的H4尾之间存在物理联系。染色质免疫沉淀实验也将H4的局部磷酸化与其在转录和DNA修复过程中的去乙酰化联系起来。时间进程染色质免疫沉淀数据支持一种模型,即在双链断裂修复过程中,在染色质恢复和去乙酰化步骤,组蛋白H4磷酸化发生在NuA4作用之后。这些发现表明,H4丝氨酸1磷酸化通过NuA4复合物调节染色质乙酰化,并且这一过程对正常基因表达和DNA修复很重要。

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