Li Lei, Poon Ho-Yin, Hildebrandt Matthew R, Monckton Elizabeth A, Germain Devon R, Fahlman Richard P, Godbout Roseline
Department of Oncology, Cross Cancer Institute, University of Alberta, 11560 University Avenue, Edmonton Alberta T6G 1Z2, Canada.
Department of Biochemistry, University of Alberta Edmonton Alberta, Canada.
DNA Repair (Amst). 2017 Jul;55:47-63. doi: 10.1016/j.dnarep.2017.05.001. Epub 2017 May 13.
Human Rap1-interacting factor 1 (RIF1) is an important player in the repair of DNA double strand breaks (DSBs). RIF1 acts downstream of 53BP1, with well-documented roles in class switch recombination in B-cells and inhibition of end resection initiation in BRCA1-defective cells. Here, we report that DEAD Box 1 (DDX1), a RNA helicase also implicated in DSB repair, interacts with RIF1, with co-localization of DDX1 and RIF1 observed throughout interphase. Recruitment of DDX1 to DSBs is dependent on RIF1, with RIF1 depletion abolishing DDX1-mediated facilitation of homologous recombination at DSBs. As previously demonstrated for RIF1, DDX1 is also required for chromatin loading of Bloom syndrome helicase (BLM) to ionizing radiation-induced DSBs, a RIF1-related activity that is independent of 53BP1. We show that DDX1 and RIF1 have different nucleic acid requirements for accumulation at DSBs, with RNA-DNA hybrids required for DDX1 accrual at DSBs, and single-strand RNA required for accumulation of RIF1 at these sites. Our data suggest both convergent and divergent roles for DDX1 and RIF1 in DSB repair, and may help explain why RIF1 depletion does not fully mimic 53BP1 ablation in the restoration of homologous recombination defects in BRCA1-deficient cells.
人类Rap1相互作用因子1(RIF1)是DNA双链断裂(DSB)修复中的重要参与者。RIF1在53BP1下游发挥作用,在B细胞的类别转换重组以及BRCA1缺陷细胞中抑制末端切除起始方面具有充分记录的作用。在此,我们报告RNA解旋酶DEAD盒1(DDX1)也参与DSB修复,它与RIF1相互作用,在整个间期均观察到DDX1与RIF1共定位。DDX1募集到DSB依赖于RIF1,RIF1缺失会消除DDX1介导的对DSB处同源重组的促进作用。如先前对RIF1的证明,DDX1对于布鲁姆综合征解旋酶(BLM)加载到电离辐射诱导的DSB的染色质上也是必需的,这是一种与RIF1相关的、独立于53BP1的活性。我们表明,DDX1和RIF1在DSB处积累具有不同的核酸需求,DSB处DDX1积累需要RNA-DNA杂交体,而RIF1在这些位点积累需要单链RNA。我们的数据表明DDX1和RIF1在DSB修复中具有趋同和不同的作用,这可能有助于解释为什么在BRCA1缺陷细胞中恢复同源重组缺陷时,RIF1缺失不能完全模拟53BP1缺失的情况。