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Control of alternative end joining by the chromatin remodeler p400 ATPase

机译:通过染色质重塑剂p400 ATPase控制替代末端连接

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摘要

Repair of DNA double-strand breaks occurs in a chromatin context that needs to be modified and remodeled to allow suitable access to the different DNA repair machineries. Of particular importance for the maintenance of genetic stability is the tight control of error-prone pathways, such as the alternative End Joining pathway. Here, we show that the chromatin remodeler p400 ATPase is a brake to the use of alternative End Joining. Using specific intracellular reporter susbstrates we observed that p400 depletion increases the frequency of alternative End Joining events, and generates large deletions following repair of double-strand breaks. This increase of alternative End Joining events is largely dependent on CtIP-mediated resection, indicating that it is probably related to the role of p400 in late steps of homologous recombination. Moreover, p400 depletion leads to the recruitment of poly(ADP) ribose polymerase (PARP) and DNA ligase 3 at DNA double-strand breaks, driving to selective killing by PARP inhibitors. All together these results show that p400 acts as a brake to prevent alternative End Joining-dependent genetic instability and underline its potential value as a clinical marker.
机译:DNA双链断裂的修复发生在染色质环境中,需要对其进行修改和重塑以允许适当地使用不同的DNA修复设备。对于维持遗传稳定性特别重要的是对容易出错的途径(例如,替代性的末端连接途径)的严格控制。在这里,我们显示了染色质重塑剂p400 ATPase阻碍了使用其他末端连接。使用特定的细胞内报告基因,我们观察到p400耗尽会增加其他末端连接事件的频率,并在修复双链断裂后产生大量缺失。替代末端连接事件的这种增加在很大程度上取决于CtIP介导的切除,这表明它可能与p400在同源重组后期的作用有关。此外,p400消耗导致DNA双链断裂处聚(ADP)核糖聚合酶(PARP)和DNA连接酶3募集,从而导致PARP抑制剂选择性杀伤。所有这些结果共同表明,p400可以起到制动作用,以防止其他依赖末端连接的遗传不稳定性,并突显了其作为临床标志物的潜在价值。

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