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休眠起始点火促进了 BRCA2 缺陷时转录终止位点处的转录-复制冲突。

Dormant origin firing promotes head-on transcription-replication conflicts at transcription termination sites in response to BRCA2 deficiency.

机构信息

Department of Biochemistry & Molecular Pharmacology, New York University School of Medicine, New York, NY, USA.

Institute for Systems Genetics, New York University School of Medicine, New York University School of Medicine, New York, NY, USA.

出版信息

Nat Commun. 2024 Jun 3;15(1):4716. doi: 10.1038/s41467-024-48286-1.

Abstract

BRCA2 is a tumor suppressor protein responsible for safeguarding the cellular genome from replication stress and genotoxicity, but the specific mechanism(s) by which this is achieved to prevent early oncogenesis remains unclear. Here, we provide evidence that BRCA2 acts as a critical suppressor of head-on transcription-replication conflicts (HO-TRCs). Using Okazaki-fragment sequencing (Ok-seq) and computational analysis, we identified origins (dormant origins) that are activated near the transcription termination sites (TTS) of highly expressed, long genes in response to replication stress. Dormant origins are a source for HO-TRCs, and drug treatments that inhibit dormant origin firing led to a reduction in HO-TRCs, R-loop formation, and DNA damage. Using super-resolution microscopy, we showed that HO-TRC events track with elongating RNA polymerase II, but not with transcription initiation. Importantly, RNase H2 is recruited to sites of HO-TRCs in a BRCA2-dependent manner to help alleviate toxic R-loops associated with HO-TRCs. Collectively, our results provide a mechanistic basis for how BRCA2 shields against genomic instability by preventing HO-TRCs through both direct and indirect means occurring at predetermined genomic sites based on the pre-cancer transcriptome.

摘要

BRCA2 是一种肿瘤抑制蛋白,负责保护细胞基因组免受复制应激和遗传毒性的影响,但尚不清楚其具体的实现机制,以防止早期致癌。在这里,我们提供证据表明 BRCA2 是一种关键的抑制物,可抑制头对头转录-复制冲突(HO-TRC)。我们使用 Okazaki 片段测序(Ok-seq)和计算分析,鉴定了在高表达、长基因的转录终止位点(TTS)附近响应复制应激而被激活的起始子(休眠起始子)。休眠起始子是 HO-TRC 的来源,抑制休眠起始子点火的药物处理会减少 HO-TRC、R 环形成和 DNA 损伤。通过超分辨率显微镜,我们发现 HO-TRC 事件与延伸的 RNA 聚合酶 II 相关,但与转录起始无关。重要的是,RNase H2 以 BRCA2 依赖的方式被募集到 HO-TRC 位点,以帮助减轻与 HO-TRC 相关的毒性 R 环。总的来说,我们的结果为 BRCA2 通过直接和间接两种方式在预定的基因组位点上防止 HO-TRC 的发生,从而防止基因组不稳定性提供了一种机制基础,而这些方式是基于癌症前转录组的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f60e/11148086/22c3e983ca9f/41467_2024_48286_Fig1_HTML.jpg

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