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由Trrap-Tip60介导的组蛋白乙酰化作用可调节修复蛋白的加载以及DNA双链断裂的修复。

Histone acetylation by Trrap-Tip60 modulates loading of repair proteins and repair of DNA double-strand breaks.

作者信息

Murr Rabih, Loizou Joanna I, Yang Yun-Gui, Cuenin Cyrille, Li Hai, Wang Zhao-Qi, Herceg Zdenko

机构信息

International Agency for Research on Cancer (IARC), 150 Cours Albert Thomas, 69008 Lyon, France.

出版信息

Nat Cell Biol. 2006 Jan;8(1):91-9. doi: 10.1038/ncb1343. Epub 2005 Dec 11.

Abstract

DNA is packaged into chromatin, a highly compacted DNA-protein complex; therefore, all cellular processes that use the DNA as a template, including DNA repair, require a high degree of coordination between the DNA-repair machinery and chromatin modification/remodelling, which regulates the accessibility of DNA in chromatin. Recent studies have implicated histone acetyltransferase (HAT) complexes and chromatin acetylation in DNA repair; however, the precise underlying mechanism remains poorly understood. Here, we show that the HAT cofactor Trrap and Tip60 HAT bind to the chromatin surrounding sites of DNA double-strand breaks (DSBs) in vivo. Trrap depletion impairs both DNA-damage-induced histone H4 hyperacetylation and accumulation of repair molecules at sites of DSBs, resulting in defective homologous recombination (HR) repair, albeit with the presence of a functional ATM-dependent DNA-damage signalling cascade. Importantly, the impaired loading of repair proteins and the defect in DNA repair in Trrap-deficient cells can be counteracted by chromatin relaxation, indicating that the DNA-repair defect that was observed in the absence of Trrap is due to impeded chromatin accessibility at sites of DNA breaks. Thus, these data reveal that cells may use the same basic mechanism involving HAT complexes to regulate distinct cellular processes, such as transcription and DNA repair.

摘要

DNA被包装成染色质,这是一种高度压缩的DNA-蛋白质复合物;因此,所有以DNA为模板的细胞过程,包括DNA修复,都需要DNA修复机制与染色质修饰/重塑之间高度协调,染色质修饰/重塑可调节染色质中DNA的可及性。最近的研究表明组蛋白乙酰转移酶(HAT)复合物和染色质乙酰化与DNA修复有关;然而,确切的潜在机制仍知之甚少。在这里,我们表明HAT辅因子Trrap和Tip60 HAT在体内与DNA双链断裂(DSB)位点周围的染色质结合。Trrap的缺失会损害DNA损伤诱导的组蛋白H4高乙酰化以及DSB位点修复分子的积累,导致同源重组(HR)修复缺陷,尽管存在功能性的ATM依赖性DNA损伤信号级联反应。重要的是,染色质松弛可以抵消Trrap缺陷细胞中修复蛋白加载受损和DNA修复缺陷的情况,这表明在没有Trrap的情况下观察到的DNA修复缺陷是由于DNA断裂位点的染色质可及性受阻所致。因此,这些数据表明细胞可能使用涉及HAT复合物的相同基本机制来调节不同的细胞过程,如转录和DNA修复。

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