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DHX9 通过招募 BRCA1 至 RNA 促进同源重组中 DNA 末端的切除。

DHX9-dependent recruitment of BRCA1 to RNA promotes DNA end resection in homologous recombination.

机构信息

Division of Cellular Medicine, Jacqui Wood Cancer Centre, School of Medicine, University of Dundee, Scotland, United Kingdom.

出版信息

Nat Commun. 2021 Jul 5;12(1):4126. doi: 10.1038/s41467-021-24341-z.

Abstract

Double stranded DNA Breaks (DSB) that occur in highly transcribed regions of the genome are preferentially repaired by homologous recombination repair (HR). However, the mechanisms that link transcription with HR are unknown. Here we identify a critical role for DHX9, a RNA helicase involved in the processing of pre-mRNA during transcription, in the initiation of HR. Cells that are deficient in DHX9 are impaired in the recruitment of RPA and RAD51 to sites of DNA damage and fail to repair DSB by HR. Consequently, these cells are hypersensitive to treatment with agents such as camptothecin and Olaparib that block transcription and generate DSB that specifically require HR for their repair. We show that DHX9 plays a critical role in HR by promoting the recruitment of BRCA1 to RNA as part of the RNA Polymerase II transcription complex, where it facilitates the resection of DSB. Moreover, defects in DHX9 also lead to impaired ATR-mediated damage signalling and an inability to restart DNA replication at camptothecin-induced DSB. Together, our data reveal a previously unknown role for DHX9 in the DNA Damage Response that provides a critical link between RNA, RNA Pol II and the repair of DNA damage by homologous recombination.

摘要

双链 DNA 断裂(DSB)发生在基因组转录活跃区域时,优先通过同源重组修复(HR)进行修复。然而,将转录与 HR 联系起来的机制尚不清楚。在这里,我们确定了 DHX9 在 HR 起始中的关键作用,DHX9 是一种 RNA 解旋酶,参与转录过程中前体 mRNA 的加工。缺乏 DHX9 的细胞在招募 RPA 和 RAD51 到 DNA 损伤部位以及通过 HR 修复 DSB 方面存在缺陷。因此,这些细胞对 camptothecin 和 Olaparib 等药物的敏感性增加,这些药物阻断转录并产生专门需要 HR 修复的 DSB。我们表明,DHX9 通过促进 BRCA1 与 RNA 的募集来发挥关键作用,作为 RNA 聚合酶 II 转录复合物的一部分,它促进 DSB 的切除。此外,DHX9 的缺陷也导致 ATR 介导的损伤信号转导受损,并且无法在 camptothecin 诱导的 DSB 处重新启动 DNA 复制。总之,我们的数据揭示了 DHX9 在 DNA 损伤反应中的一个先前未知的作用,它提供了 RNA、RNA Pol II 和同源重组修复 DNA 损伤之间的关键联系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c3a/8257769/35b61eb76ef0/41467_2021_24341_Fig1_HTML.jpg

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