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首页> 外文期刊>Nucleic acids research >NF-κB regulates DNA double-strand break repair in conjunction with BRCA1–CtIP complexes
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NF-κB regulates DNA double-strand break repair in conjunction with BRCA1–CtIP complexes

机译:NF-κB与BRCA1–CtIP复合物一起调节DNA双链断裂修复

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摘要

NF-κB is involved in immune responses, inflammation, oncogenesis, cell proliferation and apoptosis. Even though NF-κB can be activated by DNA damage via Ataxia telangiectasia-mutated (ATM) signalling, little was known about an involvement in DNA repair. In this work, we dissected distinct DNA double-strand break (DSB) repair mechanisms revealing a stimulatory role of NF-κB in homologous recombination (HR). This effect was independent of chromatin context, cell cycle distribution or cross-talk with p53. It was not mediated by the transcriptional NF-κB targets Bcl2, BAX or Ku70, known for their dual roles in apoptosis and DSB repair. A contribution by Bcl-xL was abrogated when caspases were inhibited. Notably, HR induction by NF-κB required the targets ATM and BRCA2. Additionally, we provide evidence that NF-κB interacts with CtIP–BRCA1 complexes and promotes BRCA1 stabilization, and thereby contributes to HR induction. Immunofluorescence analysis revealed accelerated formation of replication protein A (RPA) and Rad51 foci upon NF-κB activation indicating HR stimulation through DSB resection by the interacting CtIP–BRCA1 complex and Rad51 filament formation. Taken together, these results define multiple NF-κB-dependent mechanisms regulating HR induction, and thereby providing a novel intriguing explanation for both NF-κB-mediated resistance to chemo- and radiotherapies as well as for the sensitization by pharmaceutical intervention of NF-κB activation.
机译:NF-κB参与免疫反应,炎症,肿瘤发生,细胞增殖和凋亡。即使NF-κB可以通过共济失调毛细血管扩张突变(ATM)信号被DNA损伤激活,但对DNA修复的参与知之甚少。在这项工作中,我们解剖了独特的DNA双链断裂(DSB)修复机制,揭示了NF-κB在同源重组(HR)中的刺激作用。该效应与染色质环境,细胞周期分布或与p53的串扰无关。它不是由转录NF-κB靶标Bcl2,BAX或Ku70介导的,Bcl2,BAX或Ku70在细胞凋亡和DSB修复中具有双重作用。当胱天蛋白酶被抑制时,Bcl-xL的作用被取消。值得注意的是,NF-κB诱导的HR需要目标ATM和BRCA2。此外,我们提供了NF-κB与CtIP-BRCA1复合物相互作用并促进BRCA1稳定的证据,从而有助于HR的诱导。免疫荧光分析显示,NF-κB激活后复制蛋白A(RPA)和Rad51病灶的形成加速,表明通过相互作用的CtIP-BRCA1复合物和Rad51细丝形成,DSB切除可刺激HR。综上所述,这些结果定义了多种调节HR诱导的NF-κB依赖性机制,从而为NF-κB介导的对化学疗法和放射疗法的抗性以及药物干预NF-κB的致敏性提供了新颖有趣的解释。激活。

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