DNA损伤
RNA解旋酶A
生物
抄写(语言学)
癌症研究
核糖核酸
基因组不稳定性
细胞生物学
抑制器
基因
DNA
分子生物学
解旋酶
遗传学
语言学
哲学
作者
Mingming Cao,Yu Gan,Yingdan Huang,Jing Tong,Xiong Chen,Yajie Chen,Bing Chen,Ruixuan Huang,Bangxiang Xie,Jun Deng,Shenglin Huang,Xianghuo He,Qian Hao,Xiang Zhou
标识
DOI:10.1073/pnas.2415869122
摘要
The tumor suppressor p53 can trigger tumor resistance to chemotherapy by facilitating DNA damage repair and maintaining genomic integrity. Here, we report that a p53-induced circular RNA circASCC3 promotes chemotherapeutic resistance by resolving R-loops. Our results reveal that p53 directly activates the transcription of ASCC3 , the host gene of circASCC3. In addition, the RNA-binding protein SFPQ is identified to inhibit the formation of circASCC3 by associating with its flanking regions. Importantly, p53 facilitates the formation of circASCC3 by repressing the expression of SFPQ. CircASCC3 has a marginal effect on the survival and growth of cancer cells under normal growing conditions but surprisingly boosts their survival and growth in response to DNA damage stress. Mechanistic analysis reveals that circASCC3 binds to the DEAD-box RNA helicase DDX5 to inhibit its proteasomal degradation. This results in the prevention of R-loop accumulation due to DNA damage, thereby conferring tumor resistance to chemotherapy. Together, our study uncovers that p53 activates circASCC3 to promote R-loop resolution, which maintains genomic stability and potentially contributes to chemoresistance.
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