癌变
DNA损伤
基因组不稳定性
生物
小干扰RNA
同源重组
DNA
癌症研究
合成致死
DNA修复
细胞生物学
分子生物学
乳腺癌
聚合酶
核糖核酸
DNA复制
RNA干扰
DNA聚合酶
聚ADP核糖聚合酶
G2-M DNA损伤检查点
复制蛋白A
环状RNA
体外
基因组
小发夹RNA
遗传学
作者
Xing Bian,Maoyi Xu,Na Li,Chuanbo Sun,Xu Liu,Yuqi Deng,Dun Liu,Guozhen Cao,林文楚,Bo Hong,Ge Shan,Xiaolin Wang
标识
DOI:10.1073/pnas.2614237123
摘要
Genome instability (GI) is a hallmark of cancer. GI is associated with accumulative DNA damage and tumor-specific defects in DNA repair. Multiple antitumor drugs have been developed to promote persistent GI and to drive DNA damage beyond a threshold that tumor cells can survive. However, regulatory roles of circular RNAs (circRNAs) in GI and DNA damage remain elusive. Through circRNA profiling and a small interfering RNA (siRNA)-mediated screen, we have identified a circRNA termed circRBM39(4,5,6) , which is significantly decreased in breast cancer (BC) and disrupts DNA damage response. CircRBM39(4,5,6) inhibits breast tumorigenesis through increasing DNA damage and promoting sensitivity to the antitumor drug poly Adenosine Diphosphate (ADP-ribose) polymerase inhibitor (PARPi). Mechanistically, cytoplasmic circRBM39(4,5,6) interacts with replication protein A2 (RPA2), an essential DNA repair factor, through a 7-nt AG-rich motif and destabilizes RPA2 protein by facilitating HECT and RCC1-like domain 2 (HERC2)-mediated ubiquitination, thus repressing homologous recombination repair. Importantly, administration of in vitro synthesized circRBM39(4,5,6) substantially inhibits breast tumorigenesis, sensitizes BC cells to PARPi, and renders them susceptible to synthetic lethality (SL) in distinct breast tumorigenesis mouse models. Our findings highlight the interplay between circRNA and GI in cancers, and the SL of circRBM39(4,5,6) to PARPi provides strategies for RNA-based BC therapeutics.
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