首页> 美国卫生研究院文献>Journal of Bacteriology >Role for the RecBCD Recombination Pathway for pilE Gene Variation in Repair-Proficient Neisseria gonorrhoeae
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Role for the RecBCD Recombination Pathway for pilE Gene Variation in Repair-Proficient Neisseria gonorrhoeae

机译:RecBCD重组途径在修复熟练淋病奈瑟氏球菌中pilE基因变异的作用

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摘要

The role of the RecBCD recombination pathway in PilE antigenic variation in Neisseria gonorrhoeae is contentious and appears to be strain dependent. In this study, N. gonorrhoeae strain MS11 recB mutants were assessed for recombination/repair. MS11 recB mutants were found to be highly susceptible to DNA treatments that caused double-chain breaks and were severely impaired for growth; recB growth suppressor mutants arose at high frequencies. When the recombination/repair capacity of strain MS11 was compared to that of strains FA1090 and P9, innate differences were observed between the strains, with FA1090 and P9 rec+ bacteria presenting pronounced recombination/repair defects. Consequently, MS11 recB mutants present a more robust phenotype than the other strains that were tested. In addition, MS11 recB mutants are also shown to be defective for pilE/pilS recombination. Moreover, pilE/pilS recombination is shown to proceed with gonococci that carry inverted pilE loci. Consequently, a novel RecBCD-mediated double-chain-break repair model for PilE antigenic variation is proposed.
机译:RecBCD重组途径在淋病奈瑟氏球菌PilE抗原变异中的作用是有争议的,并且似乎是菌株依赖性的。在这项研究中,评估了淋病奈瑟氏球菌菌株MS11 recB突变体的重组/修复。发现MS11 recB突变体对DNA处理高度敏感,该DNA处理导致双链断裂并严重损害了其生长。 recB生长抑制突变体出现频率很高。将MS11菌株的重组/修复能力与FA1090和P9菌株的重组/修复能力进行比较,发现菌株之间存在先天差异,其中FA1090和P9rec + 细菌表现出明显的重组/修复缺陷。因此,MS11 recB突变体表现出比其他测试菌株更强大的表型。此外,还显示MS11 recB突变体在pilE / pilS重组中存在缺陷。此外,显示pilE / pilS重组会进行带有反向pilE基因座的淋球菌。因此,提出了一种新的RecBCD介导的PilE抗原变异的双链断裂修复模型。

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