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基因组不稳定与癌症中的R环

R-Loops in Genome Instability and Cancer.

作者信息

Li Fang, Zafar Alyan, Luo Liang, Denning Ariana Maria, Gu Jun, Bennett Ansley, Yuan Fenghua, Zhang Yanbin

机构信息

Department of Biochemistry & Molecular Biology, Miller School of Medicine, University of Miami, Miami, FL 33136, USA.

Department of Molecular and Cellular Pharmacology, Miller School of Medicine, University of Miami, Miami, FL 33136, USA.

出版信息

Cancers (Basel). 2023 Oct 14;15(20):4986. doi: 10.3390/cancers15204986.

Abstract

R-loops are unique, three-stranded nucleic acid structures that primarily form when an RNA molecule displaces one DNA strand and anneals to the complementary DNA strand in a double-stranded DNA molecule. R-loop formation can occur during natural processes, such as transcription, in which the nascent RNA molecule remains hybridized with the template DNA strand, while the non-template DNA strand is displaced. However, R-loops can also arise due to many non-natural processes, including DNA damage, dysregulation of RNA degradation pathways, and defects in RNA processing. Despite their prevalence throughout the whole genome, R-loops are predominantly found in actively transcribed gene regions, enabling R-loops to serve seemingly controversial roles. On one hand, the pathological accumulation of R-loops contributes to genome instability, a hallmark of cancer development that plays a role in tumorigenesis, cancer progression, and therapeutic resistance. On the other hand, R-loops play critical roles in regulating essential processes, such as gene expression, chromatin organization, class-switch recombination, mitochondrial DNA replication, and DNA repair. In this review, we summarize discoveries related to the formation, suppression, and removal of R-loops and their influence on genome instability, DNA repair, and oncogenic events. We have also discussed therapeutical opportunities by targeting pathological R-loops.

摘要

R环是一种独特的三链核酸结构,主要在RNA分子取代一条DNA链并与双链DNA分子中的互补DNA链退火时形成。R环的形成可发生在自然过程中,如转录过程,新生RNA分子与模板DNA链保持杂交,而非模板DNA链被取代。然而,R环也可由许多非自然过程产生,包括DNA损伤、RNA降解途径失调以及RNA加工缺陷。尽管R环在整个基因组中普遍存在,但主要发现于活跃转录的基因区域,这使得R环发挥着看似矛盾的作用。一方面,R环的病理性积累会导致基因组不稳定,这是癌症发展的一个标志,在肿瘤发生、癌症进展和治疗抗性中起作用。另一方面,R环在调节基本过程中发挥关键作用,如基因表达、染色质组织、类别转换重组、线粒体DNA复制和DNA修复。在本综述中,我们总结了与R环的形成、抑制和去除及其对基因组不稳定、DNA修复和致癌事件影响相关的发现。我们还讨论了针对病理性R环的治疗机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d41/10605827/ade00e63cae8/cancers-15-04986-g001a.jpg

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