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Comparative study of the physiological roles of three peroxidases (NADH peroxidase, Alkyl hydroperoxide reductase and Thiol peroxidase) in oxidative stress response, survival inside macrophages and virulence of Enterococcus faecalis

机译:三种过氧化物酶(NADH过氧化物酶,烷基氢过氧化物还原酶和硫醇过氧化物酶)在氧化应激反应,巨噬细胞内存活和粪肠球菌毒性中的生理作用的比较研究

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摘要

The opportunistic pathogen Enterococcus faecalis is well equipped with peroxidatic activities. It harbours three loci encoding a NADH peroxidase, an alkyl hydroperoxide reductase and a protein (EF2932) belonging to the AhpC/TSA family. We present results demonstrating that ef2932 does encode a thiol peroxidase (Tpx) and show that it is part of the regulon of the hydrogen peroxide regulator HypR. Characterization of unmarked deletion mutants showed that all three peroxidases are important for the defence against externally provided H(2)O(2). Exposure to internal generated H(2)O(2) by aerobic growth on glycerol, lactose, galactose or ribose showed that Npr was absolutely required for aerobic growth on glycerol and optimal growth on the other substrates. Growth on glycerol was also dependent on Ahp. Addition of catalase restored growth of the mutants, and therefore, extracellular H(2)O(2) concentrations have been determined. This showed that the time point of growth arrest of the Deltanpr mutant correlated with the highest H(2)O(2) concentration measured. Analysis of the survival of the different strains inside peritoneal macrophages revealed that Tpx was the most important antioxidant activity for protecting the cells against the hostile phagocyte environment. Finally, the Deltatpx and the triple mutant showed attenuated virulence in a mouse peritonitis model.
机译:机会性病原菌粪肠球菌具有良好的过氧化活性。它包含三个基因座,分别编码NADH过氧化物酶,烷基氢过氧化物还原酶和属于AhpC / TSA家族的蛋白质(EF2932)。我们目前的结果表明ef2932确实编码了巯基过氧化物酶(Tpx),并表明它是过氧化氢调节剂HypR的调节子的一部分。未标记的缺失突变体的表征表明,所有三种过氧化物酶对于防御外部提供的H(2)O(2)都很重要。暴露于内部产生的H(2)O(2),通过在甘油,乳糖,半乳糖或核糖上的需氧生长表明,Npr是在甘油上需氧生长和在其他底物上最佳生长所必需的。甘油的生长也取决于Ahp。过氧化氢酶的添加恢复了突变体的生长,因此,已经确定了细胞外H(2)O(2)的浓度。这表明Deltanpr突变体的生长停滞的时间点与测得的最高H(2)O(2)浓度相关。腹膜巨噬细胞内不同菌株的存活分析表明,Tpx是最重要的抗氧化活性,可保护细胞免受敌对的吞噬细胞环境的侵害。最后,Deltatpx和三重突变体在小鼠腹膜炎模型中显示出弱毒力。

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