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首页> 外文期刊>Nucleic Acids Research >Recombinase and translesion DNA polymerase decrease the speed of replication fork progression during the DNA damage response in Escherichia coli cells
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Recombinase and translesion DNA polymerase decrease the speed of replication fork progression during the DNA damage response in Escherichia coli cells

机译:重组酶和病灶性DNA聚合酶在大肠杆菌细胞DNA损伤反应期间会降低复制叉进程的速度

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摘要

The SOS response is a DNA damage response pathway that serves as a general safeguard of genome integrity in bacteria. Extensive studies of the SOS response in Escherichia coli have contributed to establishing the key concepts of cellular responses to DNA damage. However, how the SOS response impacts on the dynamics of DNA replication fork movement remains unknown. We found that inducing the SOS response decreases the mean speed of individual replication forks by 30-50% in E. coli cells, leading to a 20-30% reduction in overall DNA synthesis. dinB and recA belong to a group of genes that are upregulated during the SOS response, and encode the highly conserved proteins DinB (also known as DNA polymerase IV) and RecA, which, respectively, specializes in translesion DNA synthesis and functions as the central recombination protein. Both genes were independently responsible for the SOS-dependent slowdown of replication fork progression. Furthermore, fork speed was reduced when each gene was ectopically expressed in SOS-uninduced cells to the levels at which they are expressed in SOS-induced cells. These results clearly indicate that the increased expression of dinB and recA performs a novel role in restraining the progression of an unperturbed replication fork during the SOS response.
机译:SOS反应是DNA损伤反应途径,可作为细菌基因组完整性的一般保障。对大肠杆菌中SOS应答的广泛研究有助于建立细胞对DNA损伤的应答的关键概念。但是,SOS反应如何影响DNA复制叉运动的动力学仍然未知。我们发现,诱导SOS反应在大肠杆菌细胞中可使单个复制叉的平均速度降低30-50%,从而导致总体DNA合成降低20-30%。 dinB和recA属于一组基因,它们在SOS应答过程中被上调,并分别编码高度保守的蛋白DinB(也称为DNA聚合酶IV)和RecA,它们分别专注于病变DNA合成并起着中心重组的作用。蛋白。这两个基因是造成复制叉进程SOS依赖性减慢的独立原因。此外,当每个基因在未受SOS诱导的细胞中异位表达至在SOS诱导的细胞中表达的水平时,叉子的速度会降低。这些结果清楚地表明,在SOS应答过程中,dinB和recA表达的增加在抑制不受干扰的复制叉的进程中起着新颖的作用。

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