染色质
细胞生物学
DNA损伤
DNA复制
拓扑异构酶
PARP1
核酸酶
生物
DNA修复
突变
癌症研究
化学
共济失调毛细血管扩张
泛素
Fork(系统调用)
顺铂
DNA
复制蛋白A
癌细胞
激酶
PLK1
分子生物学
拓扑异构酶抑制剂
作者
Arindam Datta,Jessica Jackson,Yaroslav I. Morozov,Jinghan Qiu,Alessandro Vindigni,Roger A. Greenberg
标识
DOI:10.1038/s41467-026-75271-7
摘要
Ataxia Telangiectasia Mutated (ATM) kinase deficiency results in cancer susceptibility and drug hypersensitivity. Deficiency in either the BRCA1 interacting A complex or XRCC4/Ligase 4 confers resistance to Topoisomerase I or PARP1 inhibitors in ATM-deficient cells. This suggests that BRCA1-A directs toxicity to fork-damaging agents in ATM mutated cells via illegitimate end-joining. Here, we show that ATM inhibition triggers combined SUMO and ubiquitin mediated BRCA1-A damaged fork recognition to restrict end-resection and cause Topoisomerase I inhibitor hypersensitivity. BRCA1-A deficient cells display elevated chromatin accessibility and nuclease activity at damaged forks, coupled with restored resection and drug resistance. Electron microscopy evidence demonstrates that ATM inhibition prevents replication fork reversal, which is restored by BRCA1-A loss to generate substrates for end resection. These findings reveal that BRCA1-A enforces a restrictive chromatin state to suppress the genesis of resection substrates, implicating fork reversal as a key determinant of chemotherapy response in ATM deficient cells.
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