Despite the abundance of somatic structural variations (SVs) in cancer, the underlying molecular mechanisms of their formation remain unclear. In the present study, we used 6,193 whole-genome sequenced tumors to study the contributions of transcription and DNA replication collisions to genome instability. After deconvoluting robust SV signatures in three independent pan-cancer cohorts, we detected transcription-dependent, replicated-strand bias, the expected footprint of transcription-replication collision (TRC), in large tandem duplications (TDs). Large TDs are abundant in female-enriched, upper gastrointestinal tract and prostate cancers. They are associated with poor patient survival and mutations in TP53, CDK12 and SPOP. Upon inactivating CDK12, cells display significantly more TRCs, R-loops and large TDs. Inhibition of WEE1, CHK1 and ATR selectively inhibits the growth of cells deficient in CDK12. Our data suggest that large TDs in cancer form as a result of TRCs and their presence can be used as a biomarker for prognosis and treatment.
Transcription and DNA replication collisions lead to large tandem duplications and expose targetable therapeutic vulnerabilities in cancer.
转录和 DNA 复制的冲突会导致大量的串联重复,并暴露出癌症中可靶向治疗的弱点
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作者:Yang Yang, Badura Michelle L, O'Leary Patrick C, Delavan Henry M, Robinson Troy M, Egusa Emily A, Zhong Xiaoming, Swinderman Jason T, Li Haolong, Zhang Meng, Kim Minkyu, Ashworth Alan, Feng Felix Y, Chou Jonathan, Yang Lixing
| 期刊: | Nature Cancer | 影响因子: | 28.500 |
| 时间: | 2024 | 起止号: | 2024 Dec;5(12):1885-1901 |
| doi: | 10.1038/s43018-024-00848-4 | 研究方向: | 肿瘤 |
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