IFOM, Istituto Fondazione di Oncologia Molecolare, Via Adamello 16, 20139, Milan, Italy.
Università degli Studi di Milano, Dipartimento di Oncologia ed Emato-Oncologia, Via S. Sofia 9/1, 20122, Milano, Italy.
Nat Commun. 2022 May 5;13(1):2480. doi: 10.1038/s41467-022-30215-9.
DNA damage tolerance (DDT), activated by replication stress during genome replication, is mediated by translesion synthesis and homologous recombination (HR). Here we uncover that DDK kinase, essential for replication initiation, is critical for replication-associated recombination-mediated DDT. DDK relies on its multi-monoSUMOylation to facilitate HR-mediated DDT and optimal retention of Rad51 recombinase at replication damage sites. Impairment of DDK kinase activity, reduced monoSUMOylation and mutations in the putative SUMO Interacting Motifs (SIMs) of Rad51 impair replication-associated recombination and cause fork uncoupling with accumulation of large single-stranded DNA regions at fork branching points. Notably, genetic activation of salvage recombination rescues the uncoupled fork phenotype but not the recombination-dependent gap-filling defect of DDK mutants, revealing that the salvage recombination pathway operates preferentially proximal to fork junctions at stalled replication forks. Overall, we uncover that monoSUMOylated DDK acts with Rad51 in an axis that prevents replication fork uncoupling and mediates recombination-dependent gap-filling.
DNA 损伤容忍(DDT),在基因组复制过程中通过复制压力激活,由跨损伤合成和同源重组(HR)介导。在这里,我们揭示了复制起始所必需的 DDK 激酶对于与复制相关的重组介导的 DDT 至关重要。DDK 依赖于其多单 SUMO 化来促进 HR 介导的 DDT 和 Rad51 重组酶在复制损伤部位的最佳保留。DDK 激酶活性的损伤、单 SUMO 化的减少以及 Rad51 中假定的 SUMO 相互作用基序(SIM)的突变会损害与复制相关的重组,并导致叉解偶联,在叉分支点积累大量单链 DNA 区域。值得注意的是,拯救重组的遗传激活挽救了未偶联的叉表型,但不能挽救 DDK 突变体的重组依赖性缺口填充缺陷,这表明拯救重组途径优先在停滞的复制叉的叉结附近发挥作用。总的来说,我们揭示了单 SUMO 化的 DDK 与 Rad51 一起作用,防止复制叉解偶联并介导重组依赖性缺口填充。