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PARP-mediated Repair Homologous Recombination and Back-up Non-Homologous End Joining-Like Repair of Single-Strand Nicks

机译:PARP介导的修复同源重组和单链尼克的备份非同源末端连接修复

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摘要

Double-strand breaks (DSBs) in chromosomal DNA can induce both homologous recombination (HR) and non-homologous recombination (NHEJ). Recently we showed that single-strand nicks induce HR with a significant reduction in toxicity and mutagenic effects associated with NHEJ. To further investigate the differences and similarities of DSB- and nick-induced repair, we used an integrated reporter system in human cells to measure HR and NHEJ produced by the homing endonuclease I-AniI and a designed ‘nickase’ variant that nicks the same target site, focusing on the PARP and HR repair pathways. PARP inhibitors, which block single-strand break repair, increased the rate of nick-induced HR up to 1.7-fold but did not affect DSB-induced HR or mutNHEJ. Additionally, expression of the PALB2 WD40 domain in trans acted as a dominant-negative inhibitor of both DSB- and nick-induced HR, sensitized cells to PARP inhibition, and revealed an alternative mutagenic repair pathway for nicks. Thus, while both DSB- and nick-induced HR use a common pathway, their substrates are differentially processed by cellular factors. These results also suggest that the synthetic lethality of PARP and BRCA may be due to repair of nicks through an error prone, NHEJ-like mechanism that is active when both PARP and HR pathways are blocked.
机译:染色体DNA中的双链断裂(DSB)可以诱导同源重组(HR)和非同源重组(NHEJ)。最近,我们显示单链切口可诱导HR,并显着降低与NHEJ相关的毒性和诱变作用。为了进一步研究DSB和缺口诱导修复的差异和相似性,我们在人细胞中使用了整合的报告系统来测量归巢内切核酸酶I-AniI和设计成可切割同一靶标的“缺口酶”变体产生的HR和NHEJ网站,重点关注PARP和HR修复途径。阻止单链断裂修复的PARP抑制剂可将切刻诱导的HR率提高至1.7倍,但不影响DSB诱导的HR或mutNHEJ。另外,反式中PALB2 WD40结构域的表达是DSB和缺口诱导的HR的显性负抑制剂,使细胞对PARP抑制敏感,并揭示了缺口的另一种诱变修复途径。因此,虽然DSB和缺口诱导的HR均使用共同途径,但它们的底物受到细胞因子的差异处理。这些结果还表明,PARP和BRCA的合成致死性可能是由于通过容易出错的,类似于NHEJ的机制修复缺刻而引起的,该机制在PARP和HR通路均受阻时有效。

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