首页> 美国卫生研究院文献>PLoS Genetics >Collaborative Action of Brca1 and CtIP in Elimination of Covalent Modifications from Double-Strand Breaks to Facilitate Subsequent Break Repair
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Collaborative Action of Brca1 and CtIP in Elimination of Covalent Modifications from Double-Strand Breaks to Facilitate Subsequent Break Repair

机译:Brca1和CtIP在消除双链断裂的共价修饰以促进后续断裂修复中的协同作用

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摘要

Topoisomerase inhibitors such as camptothecin and etoposide are used as anti-cancer drugs and induce double-strand breaks (DSBs) in genomic DNA in cycling cells. These DSBs are often covalently bound with polypeptides at the 3′ and 5′ ends. Such modifications must be eliminated before DSB repair can take place, but it remains elusive which nucleases are involved in this process. Previous studies show that CtIP plays a critical role in the generation of 3′ single-strand overhang at “clean” DSBs, thus initiating homologous recombination (HR)–dependent DSB repair. To analyze the function of CtIP in detail, we conditionally disrupted the CtIP gene in the chicken DT40 cell line. We found that CtIP is essential for cellular proliferation as well as for the formation of 3′ single-strand overhang, similar to what is observed in DT40 cells deficient in the Mre11/Rad50/Nbs1 complex. We also generated DT40 cell line harboring CtIP with an alanine substitution at residue Ser332, which is required for interaction with BRCA1. Although the resulting CtIPS332A/−/− cells exhibited accumulation of RPA and Rad51 upon DNA damage, and were proficient in HR, they showed a marked hypersensitivity to camptothecin and etoposide in comparison with CtIP+/−/− cells. Finally, CtIPS332A/−/−BRCA1−/− and CtIP+/−/−BRCA1−/− showed similar sensitivities to these reagents. Taken together, our data indicate that, in addition to its function in HR, CtIP plays a role in cellular tolerance to topoisomerase inhibitors. We propose that the BRCA1-CtIP complex plays a role in the nuclease-mediated elimination of oligonucleotides covalently bound to polypeptides from DSBs, thereby facilitating subsequent DSB repair.
机译:喜树碱和依托泊苷等拓扑异构酶抑制剂被用作抗癌药物,并在循环细胞中诱导基因组DNA中的双链断裂(DSB)。这些DSB通常在3'和5'端与多肽共价结合。在进行DSB修复之前,必须消除此类修饰,但仍不清楚该过程中涉及哪些核酸酶。先前的研究表明,CtIP在“纯净” DSB的3'单链突出端的生成中起着关键作用,从而启动了依赖于同源重组(HR)的DSB修复。为了详细分析CtIP的功能,我们有条件地破坏了鸡DT40细胞系中的CtIP基因。我们发现CtIP对于细胞增殖以及3'单链突出端的形成至关重要,类似于在Mre11 / Rad50 / Nbs1复合体缺陷的DT40细胞中观察到的情况。我们还生成了带有CtIP的DT40细胞系,该残基在残基Ser332上具有丙氨酸取代,这是与BRCA1相互作用所必需的。尽管所得的CtIP S332A /-/-细胞在DNA损伤后表现出RPA和Rad51的积累,并且精通HR,但与CtIP +相比,它们对喜树碱和依托泊苷具有明显的超敏性/-/-单元格。最后,CtIP S332A /-/- BRCA1 -/-和CtIP + /-/- BRCA1 -/-对这些试剂表现出相似的敏感性。两者合计,我们的数据表明,除了其在HR中的功能外,CtIP在对拓扑异构酶抑制剂的细胞耐受性中也起作用。我们提出,BRCA1-CtIP复合物在核酸酶介导的与DSBs多肽共价结合的寡核苷酸的消除中发挥作用,从而促进随后的DSB修复。

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