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Fumarate reductase is a major contributor to the generation of reactive oxygen species in the anaerobe Bacteroides fragilis

机译:富马酸酯还原酶是脆弱厌氧细菌中活性氧生成的主要贡献者。

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摘要

Despite the detrimental role that endogenously generated reactive oxygen species (ROS) may play in bacteria exposed to aerobic environments, very few sources of ROS have been identified in vivo. Such studies are often precluded by the presence of efficient ROS-scavenging pathways, like those found in the aerotolerant anaerobe Bacteroides fragilis. Here we demonstrate that deletion of the genes encoding catalase (Kat), alkylhydroperoxide reductase (AhpC) and thioredoxin-dependent peroxidase (Tpx) strongly inhibits H2O2 detoxification in B. fragilis, thereby allowing for the quantification of ROS production. Exogenous fumarate significantly reduced H2O2 production in a ΔahpCΔkatΔtpx B. fragilis strain, as did deletion of fumarate reductase subunit c (frdC). Deletion of frdC also increased the aerotolerance of a strain lacking superoxide dismutase, indicating that fumarate reductase is a major contributor to ROS formation in B. fragilis exposed to oxygen.
机译:尽管内源性产生的活性氧(ROS)可能在暴露于需氧环境的细菌中发挥有害作用,但在体内却很少发现ROS的来源。此类研究通常被有效的ROS清除途径所排除,例如在耐气性厌氧菌脆弱拟杆菌中发现的那些途径。在这里,我们证明了编码过氧化氢酶(Kat),烷基氢过氧化物还原酶(AhpC)和硫氧还蛋白依赖性过氧化物酶(Tpx)的基因的删除强烈抑制了脆弱脆弱芽孢杆菌中H2O2的解毒作用,从而可量化ROS的产生。外源富马酸盐显着降低了脆弱性ΔahpCΔkatΔtpxB.菌株中的H2O2生成,富马酸盐还原酶亚基c(frdC)的缺失也是如此。 frdC的删除也增加了缺乏超氧化物歧化酶的菌株的耐空气性,这表明富马酸酯还原酶是暴露于氧气的脆弱型芽孢杆菌中ROS形成的主要因素。

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