Pathogen evolution and subsequent phenotypic heterogeneity during chronic infection are proposed to enhance Staphylococcus aureus survival during human infection. We tested this theory by genetically and phenotypically characterizing strains with mutations constructed in the mismatch repair (MMR) and oxidized guanine (GO) system, termed mutators, which exhibit increased spontaneous-mutation frequencies. Analysis of these mutators revealed not only strain-dependent increases in the spontaneous-mutation frequency but also shifts in mutational type and hot spots consistent with loss of GO or MMR functions. Although the GO and MMR systems are relied upon in some bacterial species to prevent reactive oxygen species-induced DNA damage, no deficit in hydrogen peroxide sensitivity was found when either of these DNA repair pathways was lost in S. aureus. To gain insight into the contribution of increased mutation supply to S. aureus pathoadaptation, we measured the rate of α-hemolysin and staphyloxanthin inactivation during serial passage. Detection of increased rates of α-hemolysin and staphyloxanthin inactivation in GO and MMR mutants suggests that these strains are capable of modifying virulence phenotypes implicated in mediating infection. Accelerated derivation of altered virulence phenotypes, combined with the absence of increased ROS sensitivity, highlights the potential of mutators to drive pathoadaptation in the host and serve as catalysts for persistent infections.
Evolution in fast forward: a potential role for mutators in accelerating Staphylococcus aureus pathoadaptation.
快速进化:突变体在加速金黄色葡萄球菌致病适应中的潜在作用
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作者:Canfield Gregory S, Schwingel Johanna M, Foley Matthew H, Vore Kelly L, Boonanantanasarn Kanitsak, Gill Ann L, Sutton Mark D, Gill Steven R
| 期刊: | Journal of Bacteriology | 影响因子: | 3.000 |
| 时间: | 2013 | 起止号: | 2013 Feb;195(3):615-28 |
| doi: | 10.1128/JB.00733-12 | 研究方向: | 其它 |
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