Institute of Cancer and Genomic Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, B15 2TT, UK.
Molecular Oncology Program, Spanish National Cancer Research Centre, Madrid, Spain.
Nat Commun. 2020 Nov 17;11(1):5863. doi: 10.1038/s41467-020-19570-7.
Stalled replication forks can be restarted and repaired by RAD51-mediated homologous recombination (HR), but HR can also perform post-replicative repair after bypass of the obstacle. Bulky DNA adducts are important replication-blocking lesions, but it is unknown whether they activate HR at stalled forks or behind ongoing forks. Using mainly BPDE-DNA adducts as model lesions, we show that HR induced by bulky adducts in mammalian cells predominantly occurs at post-replicative gaps formed by the DNA/RNA primase PrimPol. RAD51 recruitment under these conditions does not result from fork stalling, but rather occurs at gaps formed by PrimPol re-priming and resection by MRE11 and EXO1. In contrast, RAD51 loading at double-strand breaks does not require PrimPol. At bulky adducts, PrimPol promotes sister chromatid exchange and genetic recombination. Our data support that HR at bulky adducts in mammalian cells involves post-replicative gap repair and define a role for PrimPol in HR-mediated DNA damage tolerance.
停滞的复制叉可以通过 RAD51 介导的同源重组(HR)重新启动和修复,但 HR 也可以在绕过障碍后进行复制后修复。大体积 DNA 加合物是重要的复制阻断损伤,但尚不清楚它们是否会在停滞的叉上或在进行中的叉后激活 HR。使用主要的 BPDE-DNA 加合物作为模型损伤,我们表明哺乳动物细胞中大体积加合物诱导的 HR 主要发生在 PrimPol 形成的复制后缺口处。在这些条件下,RAD51 的募集不是由于叉停滞,而是发生在 PrimPol 重新引发和 MRE11 和 EXO1 切除形成的缺口处。相比之下,RAD51 在双链断裂处的加载不需要 PrimPol。在大体积加合物处,PrimPol 促进姐妹染色单体交换和遗传重组。我们的数据支持哺乳动物细胞中大体积加合物处的 HR 涉及复制后缺口修复,并定义了 PrimPol 在 HR 介导的 DNA 损伤耐受中的作用。