DNA损伤
PARP1
DNA修复
同源重组
细胞生物学
DNA
记录
DNA修复蛋白XRCC4
生物
DNA损伤修复
基因组不稳定性
癌症研究
复制蛋白A
化学
非同源性末端接合
分子生物学
核苷酸切除修复
聚ADP核糖聚合酶
雷达51
计算生物学
DNA错配修复
遗传学
G2-M DNA损伤检查点
癌症
作者
Kun Gao,Ruiya Shi,Chenying Xu,Zijuan Mao,Changying Guo,良樹 鷹津
标识
DOI:10.1083/jcb.202501091
摘要
DNA damage repair is vital for maintaining genetic stability and integrity of cells that encounter DNA-damaging agents. So far, a series of multifunctional proteins and long noncoding RNAs (lncRNAs) have been demonstrated to participate in the DNA damage response (DDR). However, our current understanding of detailed mechanisms of DNA damage repair remains limited. Herein, we report that lncRNA EGFR-AS1 is functionally involved in DDR in both non-small-cell lung cancer cells and noncancerous cells. Using DNA repair reporter, we found that EGFR-AS1 overexpression significantly enhances the efficiency of both the classical nonhomologous end-joining and homologous recombination pathways. Through the lncRNA interactome, we identified a set of DNA repair factors, including the canonical DNA damage sensor PARP1 and NAD+ supplier NMNAT1. Upon DNA damage, DNA-activated PARP1 binds to EGFR-AS1 and forms a ternary complex with NMNAT1, promoting NAD+ utilization and poly(ADP-ribosyl)ation (PARylation) of PARP1. Additionally, EGFR-AS1 also facilitates displacing PARP1 from the sites of damaged DNA. Our findings demonstrate a lncRNA-associated PARP1 activation and displacement in DDR and highlight the potential of EGFR-AS1 as a target for cancer therapy.
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