Unrestrained 53BP1 activity at DNA double-strand breaks (DSBs) hampers DNA end resection and upsets DSB repair pathway choice. RNF169 acts as a molecular rheostat to limit 53BP1 deposition at DSBs, but how this fine balance translates to DSB repair control remains undefined. In striking contrast to 53BP1, ChIP analyses of AsiSI-induced DSBs unveiled that RNF169 exhibits robust accumulation at DNA end-proximal regions and preferentially targets resected, RPA-bound DSBs. Accordingly, we found that RNF169 promotes CtIP-dependent DSB resection and favors homology-mediated DSB repair, and further showed that RNF169 dose-dependently stimulates single-strand annealing repair, in part, by alleviating the 53BP1-imposed barrier to DSB end resection. Our results highlight the interplay of RNF169 with 53BP1 in fine-tuning choice of DSB repair pathways.
RNF169 limits 53BP1 deposition at DSBs to stimulate single-strand annealing repair.
RNF169 限制 53BP1 在 DSB 处的沉积,从而刺激单链退火修复
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作者:An Liwei, Dong Chao, Li Junshi, Chen Jie, Yuan Jingsong, Huang Jun, Chan Kui Ming, Yu Cheng-Han, Huen Michael S Y
| 期刊: | Proceedings of the National Academy of Sciences of the United States of America | 影响因子: | 9.100 |
| 时间: | 2018 | 起止号: | 2018 Aug 28; 115(35):E8286-E8295 |
| doi: | 10.1073/pnas.1804823115 | ||
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