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Thiosulfate Reduction in Salmonella enterica Is Driven by the Proton Motive Force

机译:质子原动力驱动肠沙门氏菌中硫代硫酸盐的还原

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摘要

Thiosulfate respiration in Salmonella enterica serovar Typhimurium is catalyzed by the membrane-bound enzyme thiosulfate reductase. Experiments with quinone biosynthesis mutants show that menaquinol is the sole electron donor to thiosulfate reductase. However, the reduction of thiosulfate by menaquinol is highly endergonic under standard conditions (ΔE°′ = −328 mV). Thiosulfate reductase activity was found to depend on the proton motive force (PMF) across the cytoplasmic membrane. A structural model for thiosulfate reductase suggests that the PMF drives endergonic electron flow within the enzyme by a reverse loop mechanism. Thiosulfate reductase was able to catalyze the combined oxidation of sulfide and sulfite to thiosulfate in a reverse of the physiological reaction. In contrast to the forward reaction the exergonic thiosulfate-forming reaction was PMF independent. Electron transfer from formate to thiosulfate in whole cells occurs predominantly by intraspecies hydrogen transfer.
机译:肠膜沙门氏菌鼠伤寒沙门氏菌中的硫代硫酸盐呼吸作用被膜结合酶硫代硫酸盐还原酶催化。醌生物合成突变体的实验表明,甲萘醌是硫代硫酸盐还原酶的唯一电子供体。然而,在标准条件下(ΔE°'= -328 mV),甲萘醌可还原硫代硫酸盐。发现硫代硫酸盐还原酶活性取决于跨细胞质膜的质子原动力(PMF)。硫代硫酸盐还原酶的结构模型表明,PMF通过反向环机制驱动酶内的性电子流。硫代硫酸盐还原酶能够以相反的生理反应催化硫化物和亚硫酸盐组合氧化为硫代硫酸盐。与正向反应相反,能电硫代硫酸盐形成反应不依赖PMF。在整个细胞中,从甲酸到硫代硫酸盐的电子转移主要通过种内氢转移发生。

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