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首页> 外文期刊>Nucleic Acids Research >Overlapping roles for PARP1 and PARP2 in the recruitment of endogenous XRCC1 and PNKP into oxidized chromatin
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Overlapping roles for PARP1 and PARP2 in the recruitment of endogenous XRCC1 and PNKP into oxidized chromatin

机译:PARP1和PARP2在募集内源性XRCC1和PNKP中的重叠角色在氧化染色质中

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摘要

A critical step of DNA single-strand break repair is the rapid recruitment of the scaffold protein XRCC1 that interacts with, stabilizes and stimulates multiple enzymatic components of the repair process. XRCC1 recruitment is promoted by PARP1, an enzyme that is activated following DNA damage and synthesizes ADP-ribose polymers that XRCC1 binds directly. However, cells possess two other DNA strand breakinduced PARP enzymes, PARP2 and PARP3, for which the roles are unclear. To address their involvement in the recruitment of endogenous XRCC1 into oxidized chromatin we have established ` isogenic' human diploid cells in which PARP1 and/or PARP2, or PARP3 are deleted. Surprisingly, we show that either PARP1 or PARP2 are sufficient for near-normal XRCC1 recruitment at oxidative single-strand breaks (SSBs) as indicated by the requirement for loss of both proteins to greatly reduce or ablate XRCC1 chromatin binding following H2O2 treatment. Similar results were observed for PNKP; an XRCC1 protein partner important for repair of oxidative SSBs. Notably, concentrations of PARP inhibitor > 1000-fold higher than the IC50 were required to ablate both ADP-ribosylation and XRCC1 chromatin binding following H2O2 treatment. These results demonstrate that very low levels of ADP-ribosylation, synthesized by either PARP1 or PARP2, are sufficient for XRCC1 recruitment following oxidative stress.
机译:DNA单链断裂修复的临界步骤是快速募集与其相互作用,稳定和刺激修复过程的多种酶促成分的支架蛋白XRCC1的快速募集。通过PARP1促进XRCC1募集,一种在DNA损伤后激活的酶,并合成XRCC1直接结合的ADP-核糖聚合物。然而,细胞具有另外两种DNA链突出诱导的PARP酶,PARP2和PARP3,其中角色尚不清楚。为了解决他们参与募集内源性XRCC1的氧化染色质,我们已经建立了删除了PARP1和/或PARP2或PARP3的“中生”人类二倍体细胞。令人惊讶的是,我们表明PARP1或PARP2足以在氧化单链(SSBS)处于近似正常的XRCC1募集,如通过对两种蛋白质丧失的要求,以大大减少或消融在H 2 O 2处理后的XRCC1染色质结合。对PNKP观察到类似的结果; XRCC1蛋白质合作伙伴对于修复氧化SSBS是重要的。值得注意的是,需要高于IC 50的PARP抑制剂的浓度> 1000倍以在H 2 O 2处理后烧蚀ADP-核糖基化和XRCC1染色质结合。这些结果表明,通过PARP1或PARP2合成的ADP-核糖化水平非常低,足以氧化应激后XRCC1募集。

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