Centre for DNA Fingerprinting and Diagnostics, Hyderabad 500039, India.
Graduate Studies, Manipal Academy of Higher Education, Manipal 576104, India.
Nucleic Acids Res. 2022 Aug 26;50(15):8643-8657. doi: 10.1093/nar/gkac670.
Replication of the circular bacterial chromosome is initiated from a locus oriC with the aid of an essential protein DnaA. One approach to identify factors acting to prevent aberrant oriC-independent replication initiation in Escherichia coli has been that to obtain mutants which survive loss of DnaA. Here, we show that a ΔrecD mutation, associated with attenuation of RecBCD's DNA double strand end-resection activity, provokes abnormal replication and rescues ΔdnaA lethality in two situations: (i) in absence of 5'-3' single-strand DNA exonuclease RecJ, or (ii) when multiple two-ended DNA double strand breaks (DSBs) are generated either by I-SceI endonucleolytic cleavages or by radiomimetic agents phleomycin or bleomycin. One-ended DSBs in the ΔrecD mutant did not rescue ΔdnaA lethality. With two-ended DSBs in the ΔrecD strain, ΔdnaA viability was retained even after linearization of the chromosome. Data from genome-wide DNA copy number determinations in ΔdnaA-rescued cells lead us to propose a model that nuclease-mediated DNA resection activity of RecBCD is critical for prevention of a σ-mode of rolling-circle over-replication when convergent replication forks merge and fuse, as may be expected to occur during normal replication at the chromosomal terminus region or during repair of two-ended DSBs following 'ends-in' replication.
环状细菌染色体的复制是从一个称为 oriC 的位置开始的,这个位置需要一种必需的蛋白质 DnaA 的帮助。一种识别可防止大肠杆菌中异常 oriC 独立复制起始的因素的方法是获得失去 DnaA 仍能存活的突变体。在这里,我们表明与 RecBCD 的 DNA 双链末端切除活性减弱相关的 ΔrecD 突变体引发异常复制并挽救了两个情况下的 ΔdnaA 致死性:(i)在缺乏 5'-3'单链 DNA 外切核酸酶 RecJ 的情况下,或(ii)当通过 I-SceI 内切酶切割或放射模拟物丝裂霉素或博来霉素生成多个双端 DNA 双链断裂 (DSB) 时。在 ΔrecD 突变体中,单端 DSB 不能挽救 ΔdnaA 致死性。在 ΔrecD 菌株中,即使染色体线性化,双端 DSB 仍保留了 ΔdnaA 的活力。来自全基因组 DNA 拷贝数测定的数据表明,当收敛的复制叉融合并融合时,RecBCD 的核酸酶介导的 DNA 切除活性对于防止 σ 模式的滚环过度复制至关重要,这可能在染色体末端区域的正常复制期间或在“末端进入”复制后修复双端 DSB 期间发生。