Ivanković Siniša, Vujaklija Dušica, Đermić Damir
Ruđer Bošković Institute, Division of Molecular Medicine, Zagreb, Croatia.
Ruđer Bošković Institute, Division of Molecular Biology, Zagreb, Croatia.
DNA Repair (Amst). 2017 Sep;57:56-65. doi: 10.1016/j.dnarep.2017.06.024. Epub 2017 Jun 27.
Degradation of a 5'-ending strand is the hallmark of the universal process of DNA double strand break (DSB) resection, which results in creation of the central recombination intermediate, a 3'-ending overhang. Here we show that in Escherichia coli recB1080/recB1067 mutants, which are devoid of RecBCD's nuclease and RecA loading activities, degradation of the unwound 3' tail is as essential as is degradation of its 5'-ending complement. Namely, a synergistic action of ExoI, ExoVII, SbcCD and ExoX single-strand specific exonucleases (ssExos) of 3'-5' polarity was essential for preserving cell viability, DNA repair and homologous recombination in the recB1080/recB1067 mutants, to the same extent as the redundant action of 5'-tail trimming ssExos RecJ and ExoVII. recB1080 derivatives lacking 3'-5' ssExos also showed a strong induction of the SOS response and greatly increased SOS-dependent mutagenesis. Furthermore, we show that ExoI and ExoVII ssExos act synergistically in suppressing illegitimate recombination in the recB1080 mutant but not in a wt strain, while working in concert with the RecQ helicase. Remarkably, 3'-5' ssExos show synergism with RecQ helicase in the recB1080 mutant in all the assays tested. The effect of inactivation of 3'-5' ssExos in the recB1080/recB1067 mutants was much stronger than in wt, recD, and recB strains. These results demonstrate that the presence of a long, reactive 3' overhang can be as toxic for a cell as its complete absence, i.e. it may prevent DSB repair. Our results indicate that coupling of helicase and RecA-loading activity during dsDNA-end resection is crucial in avoiding the deleterious effects of a long and stabile 3' tail in E. coli.
5' 末端链的降解是DNA双链断裂(DSB)切除这一普遍过程的标志,该过程会产生中心重组中间体,即3' 末端突出端。在此我们表明,在缺乏RecBCD核酸酶和RecA加载活性的大肠杆菌recB1080/recB1067突变体中,解旋后的3' 尾巴的降解与其5' 末端互补链的降解同样重要。也就是说,3' - 5' 极性的ExoI、ExoVII、SbcCD和ExoX单链特异性核酸外切酶(ssExos)的协同作用对于recB1080/recB1067突变体维持细胞活力、DNA修复和同源重组至关重要,其程度与5' 尾巴修剪ssExos RecJ和ExoVII的冗余作用相同。缺乏3' - 5' ssExos的recB1080衍生物也表现出强烈的SOS反应诱导以及SOS依赖性诱变的大幅增加。此外,我们表明ExoI和ExoVII ssExos在抑制recB1080突变体中的非法重组方面协同作用,但在野生型菌株中则不然,同时它们与RecQ解旋酶协同发挥作用。值得注意的是,在所有测试的实验中,3' - 5' ssExos在recB1080突变体中与RecQ解旋酶表现出协同作用。3' - 5' ssExos在recB1080/recB1067突变体中的失活效应比在野生型、recD和recB菌株中要强得多。这些结果表明,长的、有反应性的3' 突出端的存在对细胞可能与完全不存在一样有毒,即它可能会阻止DSB修复。我们的结果表明,在双链DNA末端切除过程中解旋酶和RecA加载活性的耦合对于避免大肠杆菌中长而稳定的3' 尾巴的有害影响至关重要。