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γH2AX and its role in DNA double-strand break repair

机译:γH2AX及其在DNA双链断裂修复中的作用

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One of the earliest responses to a DNA double-strand break (DSB) is the carboxy-terminal phosphorylation of budding yeast H2A (metazoan histone H2AX) to create γH2A (or γΗ2ΑX). This chromatin modification stretches more than tens of kilobases around the DSB and has been proposed to play numerous roles in break recognition and repair, although it may not be the primary signal for many of these events. Studies suggest that γH2A(X) has 2 more direct roles: (i) to recruit cohesin around the DSB, and (ii) to maintain a checkpoint arrest. Recent work has identified other factors, including chromatin remodelers and protein phosphatases, which target γH2A(X) and regulate DSB repair/recovery.
机译:对DNA双链断裂(DSB)的最早响应之一是发芽的酵母H2A(metazoan组蛋白H2AX)的羧基末端磷酸化,从而生成γH2A(或γΗ2ΑX)。这种染色质修饰在DSB周围延伸了数十万个碱基,尽管它可能不是许多此类事件的主要信号,但已提议在断裂识别和修复中发挥许多作用。研究表明,γH2A(X)具有两个更直接的作用:(i)在DSB周围募集粘着蛋白,以及(ii)维持检查站逮捕。最近的工作已经确定了其他因素,包括染色质重塑剂和蛋白质磷酸酶,它们靶向γH2A(X)并调节DSB的修复/恢复。

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