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N2-烷基-dG 损伤会在基因组中积累 R 环。

N 2-Alkyl-dG lesions elicit R-loop accumulation in the genome.

机构信息

Department of Chemistry, University of California, Riverside, CA 92521-0403, USA.

Environmental Toxicology Graduate Program, University of California, Riverside, CA 92521-0403, USA.

出版信息

Nucleic Acids Res. 2024 Nov 11;52(20):12487-12497. doi: 10.1093/nar/gkae845.

Abstract

Humans are exposed to DNA alkylating agents through endogenous metabolism, environmental exposure and cancer chemotherapy. The resulting alkylated DNA adducts may elicit genome instability by perturbing DNA replication and transcription. R-loops regulate various cellular processes, including transcription, DNA repair, and telomere maintenance. However, unscheduled R-loops are also recognized as potential sources of DNA damage and genome instability. In this study, by employing fluorescence microscopy and R-loop sequencing approaches, we uncovered, for the first time, that minor-groove N2-alkyl-dG lesions elicit elevated R-loop accumulation in chromatin and in plasmid DNA in cells. We also demonstrated that the N2-alkyl-dG-induced R-loops impede transcription elongation and compromise genome integrity. Moreover, genetic depletion of DDX23, a R-loop helicase, renders cells more sensitive toward benzo[a]pyrene diolepoxide, a carcinogen that induces mainly the minor-groove N2-dG adduct. Together, our work unveiled that unrepaired minor-groove N2-alkyl-dG lesions may perturb genome integrity through augmenting R-loop levels in chromatin. Our findings suggest a potential therapeutic strategy involving the combination of R-loop helicase inhibitors with DNA alkylating drugs.

摘要

人类通过内源性代谢、环境暴露和癌症化疗接触 DNA 烷化剂。由此产生的烷化 DNA 加合物可能通过干扰 DNA 复制和转录引起基因组不稳定。R 环调节各种细胞过程,包括转录、DNA 修复和端粒维持。然而,未计划的 R 环也被认为是潜在的 DNA 损伤和基因组不稳定的来源。在这项研究中,我们首次通过荧光显微镜和 R 环测序方法发现,小沟 N2-烷基-dG 损伤会在染色质和质粒 DNA 中引起 R 环积累增加。我们还证明,N2-烷基-dG 诱导的 R 环会阻碍转录延伸并损害基因组完整性。此外,R 环解旋酶 DDX23 的遗传缺失使细胞对苯并[a]芘二环氧乙烷(一种主要诱导小沟 N2-dG 加合物的致癌剂)更敏感。总之,我们的工作揭示了未修复的小沟 N2-烷基-dG 损伤可能通过增加染色质中的 R 环水平来破坏基因组完整性。我们的发现表明,一种潜在的治疗策略涉及 R 环解旋酶抑制剂与 DNA 烷化药物的联合应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b9a/11551765/93c2e7b05d30/gkae845figgra1.jpg

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