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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Multiple Genetic Pathways for Restarting DNA Replication Forks in Escherichia coli K-12
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Multiple Genetic Pathways for Restarting DNA Replication Forks in Escherichia coli K-12

机译:用于重启大肠杆菌K-12中DNA复制叉的多种遗传途径

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摘要

In Escherichia coli , the primosome assembly proteins, PriA, PriB, PriC, DnaT, DnaC, DnaB, and DnaG, are thought to help to restart DNA replication forks at recombinational intermediates. Redundant functions between priB and priC and synthetic lethality between priA2::kan and rep3 mutations raise the possibility that there may be multiple pathways for restarting replication forks in vivo. Herein, it is shown that priA2::kan causes synthetic lethality when placed in combination with either Δ rep::kan or priC303:kan. These determinations were made using a nonselective P1 transduction-based viability assay. Two different priA2::kan suppressors (both dnaC alleles) were tested for their ability to rescue the priA-priC and priA-rep double mutant lethality. Only dnaC809,820 (and not dnaC809 ) could rescue the lethality in each case. Additionally, it was shown that the absence of the 3′-5′ helicase activity of both PriA and Rep is not the critical missing function that causes the synthetic lethality in the rep-priA double mutant. One model proposes that replication restart at recombinational intermediates occurs by both PriA-dependent and PriA-independent pathways. The PriA-dependent pathways require at least priA and priB or priC , and the PriA-independent pathway requires at least priC and rep. It is further hypothesized that the dnaC809 suppression of priA2::kan requires priC and rep , whereas dnaC809,820 suppression of priA2::kan does not.
机译:在大肠杆菌中,PriA,PriB,PriC,DnaT,DnaC,DnaB和DnaG等原核糖体组装蛋白被认为有助于重启重组中间体上的DNA复制叉。 priB和priC之间的冗余功能以及priA2 :: kan和rep3突变之间的合成致死性增加了可能存在多种途径在体内重新启动复制叉的可能性。在此显示,当与Δrep:: kan或priC303:kan组合使用时,priA2 :: kan引起合成杀伤力。这些确定是使用非选择性的基于P1转导的生存力测定法进行的。测试了两种不同的priA2 :: kan抑制子(均为dnaC等位基因)挽救priA-priC和priA-rep双突变杀伤力的能力。在每种情况下,只有dnaC809,820(而非dnaC809)才能挽救杀伤力。另外,已经表明,PriA和Rep两者都不存在3'-5'解旋酶活性不是在rep-priA双重突变体中引起合成致死性的关键缺失功能。一种模型提出,重组中间体之间的复制重启是通过PriA依赖和PriA独立的途径发生的。依赖PriA的途径至少需要priA和priB或priC,而依赖PriA的途径至少需要priC和rep。进一步假设priA2 :: kan的dnaC809抑制需要priC和rep,而priA2 :: kan的dnaC809,820抑制则不需要。

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