Team DNA Damage and Genome Instability, Cancer Research Center of Marseille (CRCM); CNRS, Aix Marseille Univ, INSERM, Institut Paoli-Calmettes, Marseille, France.
PLoS Genet. 2022 Jun 2;18(6):e1010238. doi: 10.1371/journal.pgen.1010238. eCollection 2022 Jun.
During replication, the presence of unrepaired lesions results in the formation of single stranded DNA (ssDNA) gaps that need to be repaired to preserve genome integrity and cell survival. All organisms have evolved two major lesion tolerance pathways to continue replication: Translesion Synthesis (TLS), potentially mutagenic, and Homology Directed Gap Repair (HDGR), that relies on homologous recombination. In Escherichia coli, the RecF pathway repairs such ssDNA gaps by processing them to produce a recombinogenic RecA nucleofilament during the presynaptic phase. In this study, we show that the presynaptic phase is crucial for modulating lesion tolerance pathways since the competition between TLS and HDGR occurs at this stage. Impairing either the extension of the ssDNA gap (mediated by the nuclease RecJ and the helicase RecQ) or the loading of RecA (mediated by RecFOR) leads to a decrease in HDGR and a concomitant increase in TLS. Hence, we conclude that defects in the presynaptic phase delay the formation of the D-loop and increase the time window allowed for TLS. In contrast, we show that a defect in the postsynaptic phase that impairs HDGR does not lead to an increase in TLS. Unexpectedly, we also reveal a strong genetic interaction between recF and recJ genes, that results in a recA deficient-like phenotype in which HDGR is almost completely abolished.
在复制过程中,未修复的损伤会导致单链 DNA(ssDNA)缺口的形成,需要进行修复以保持基因组完整性和细胞存活。所有生物都进化出了两种主要的损伤容忍途径来继续复制:跨损伤合成(TLS),可能具有诱变作用,和同源定向缺口修复(HDGR),依赖于同源重组。在大肠杆菌中,RecF 途径通过在前突触阶段处理这些 ssDNA 缺口来修复它们,从而产生具有重组活性的 RecA 核丝。在这项研究中,我们表明前突触阶段对于调节损伤容忍途径至关重要,因为 TLS 和 HDGR 之间的竞争发生在这个阶段。干扰 ssDNA 缺口的延伸(由核酸酶 RecJ 和解旋酶 RecQ 介导)或 RecA 的加载(由 RecFOR 介导)都会导致 HDGR 减少和 TLS 增加。因此,我们得出结论,前突触阶段的缺陷会延迟 D 环的形成,并增加 TLS 的时间窗口。相比之下,我们表明,后突触阶段的缺陷会损害 HDGR,但不会导致 TLS 增加。出乎意料的是,我们还揭示了 recF 和 recJ 基因之间的强烈遗传相互作用,导致类似于 recA 缺陷的表型,其中 HDGR 几乎完全被废除。