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在大肠杆菌RecA装载缺陷的recB突变体中,3'末端突出端的核酸酶解降解对于DNA末端切除至关重要。

Nucleolytic degradation of 3'-ending overhangs is essential for DNA-end resection in RecA-loading deficient recB mutants of Escherichia coli.

作者信息

Ivanković Siniša, Vujaklija Dušica, Đermić Damir

机构信息

Ruđer Bošković Institute, Division of Molecular Medicine, Zagreb, Croatia.

Ruđer Bošković Institute, Division of Molecular Biology, Zagreb, Croatia.

出版信息

DNA Repair (Amst). 2017 Sep;57:56-65. doi: 10.1016/j.dnarep.2017.06.024. Epub 2017 Jun 27.

Abstract

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.

摘要

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。

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