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The Heterotrophic Bacterium Cupriavidus pinatubonensis JMP134 Oxidizes Sulfide to Sulfate with Thiosulfate as a Key Intermediate

机译:杂养基菌铜血管吡吡伐单抗,JMP134用硫代硫酸盐将硫化物氧化成硫酸盐作为关键中间体

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Heterotrophic bacteria actively participate in the biogeochemical cycle of sulfur on Earth. The heterotrophic bacterium Cupriavidus pinatubonensis JMP134 contains several enzymes involved in sulfur oxidation, but how these enzymes work together to oxidize sulfide in the bacterium has not been studied. Using gene-deletion and whole-cell assays, we determined that the bacterium uses sulfide:quinone oxidoreductase to oxidize sulfide to polysulfide, which is further oxidized to sulfite by persulfide dioxygenase. Sulfite spontaneously reacts with polysulfide to produce thiosulfate. The sulfur-oxidizing (Sox) system oxidizes thiosulfate to sulfate. Flavocytochrome c sulfide dehydrogenase enhances thiosulfate oxidation by the Sox system but couples with the Sox system for sulfide oxidation to sulfate in the absence of sulfide:quinone oxidoreductase. Thus, C. pinatubonensis JMP134 contains a main pathway and a contingent pathway for sulfide oxidation.IMPORTANCE We establish a new pathway of sulfide oxidation with thiosulfate as a key intermediate in Cupriavidus pinatubonensis JMP134. The bacterium mainly oxidizes sulfide by using sulfide:quinone oxidoreductase, persulfide dioxygenase, and the Sox system with thiosulfate as a key intermediate. Although the purified and reconstituted Sox system oxidizes sulfide, its rate of sulfide oxidation in C. pinatubonensis JMP134 is too low to be physiologically relevant. The findings reveal how these sulfur-oxidizing enzymes participate in sulfide oxidation in a single bacterium.
机译:异养细菌积极参与地球上硫的生物地良细胞循环。杂营养的菌特异性吡吡伐单抗吡螺杆菌菌含有JMP134含有几种参与硫氧化的酶,但是这些酶将如何将氧化在细菌中的硫化物氧化在一起。使用基因缺失和全细胞测定,我们确定细菌使用硫化物:醌氧化还原酶以将硫化物氧化成多硫化物,通过过硫化物二氧化根原酶进一步氧化成亚硫酸盐。亚硫酸盐自发地与多硫化物反应以产生硫代硫酸盐。硫氧化(SOX)系统将硫代硫酸盐氧化至硫酸盐。黄酮核C硫化物脱氢酶通过SOX系统增强硫代硫酸盐氧化,但在没有硫化物的情况下,用SOX系统与SOX系统进行硫酸盐:醌氧化还原酶。因此,C.Pinatubonensis JMP134含有主要途径和硫化物氧化的或有途径。分析我们在Cupriavidus Pinatubonensis JMP134中建立了硫化硫化物的新硫化物氧化途径。细菌主要通过使用硫化物:醌氧化还原酶,过硫化物二恶英酶和SOX系统作为关键中间体,醌氧化还原酶和SOX系统氧化硫化物。虽然纯化和重构的SOX系统氧化硫化物,但其C.InaTubonensis JMP134中的硫化物氧化率太低,不能生理相关。结果表明,这些硫氧化酶如何参与单一细菌中的硫化物氧化。

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