Department of Radiation Oncology, MSKCC, New York, NY, 10065, USA.
Department of Pathology and Laboratory Medicine, MSKCC, New York, NY, 10065, USA.
Nat Commun. 2024 Sep 5;15(1):7776. doi: 10.1038/s41467-024-51784-x.
Collisions of the transcription and replication machineries on the same DNA strand can pose a significant threat to genomic stability. These collisions occur in part due to the formation of RNA-DNA hybrids termed R-loops, in which a newly transcribed RNA molecule hybridizes with the DNA template strand. This study investigated the role of RAD52, a known DNA repair factor, in preventing collisions by directing R-loop formation and resolution. We show that RAD52 deficiency increases R-loop accumulation, exacerbating collisions and resulting in elevated DNA damage. Furthermore, RAD52's ability to interact with the transcription machinery, coupled with its capacity to facilitate R-loop dissolution, highlights its role in preventing collisions. Lastly, we provide evidence of an increased mutational burden from double-strand breaks at conserved R-loop sites in human tumor samples, which is increased in tumors with low RAD52 expression. In summary, this study underscores the importance of RAD52 in orchestrating the balance between replication and transcription processes to prevent collisions and maintain genome stability.
转录和复制机制在同一 DNA 链上的碰撞会对基因组稳定性构成重大威胁。这些碰撞部分是由于 RNA-DNA 杂交体的形成,即 R 环,其中新转录的 RNA 分子与 DNA 模板链杂交。本研究调查了 RAD52(一种已知的 DNA 修复因子)在通过指导 R 环形成和解决来防止碰撞方面的作用。我们表明,RAD52 缺乏会增加 R 环的积累,从而加剧碰撞并导致 DNA 损伤增加。此外,RAD52 与转录机制相互作用的能力,加上其促进 R 环溶解的能力,突出了其在防止碰撞中的作用。最后,我们提供了证据表明,在人类肿瘤样本中,在保守的 R 环位点处,双链断裂会导致突变负担增加,而 RAD52 表达水平低的肿瘤中这种增加更为明显。总之,本研究强调了 RAD52 在协调复制和转录过程之间的平衡以防止碰撞和维持基因组稳定性方面的重要性。