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Vanadium(V) Reduction by Shewanella oneidensis MR-1 Requires Menaquinone and Cytochromes from the Cytoplasmic and Outer Membranes

机译:拟南芥希瓦氏菌MR-1还原钒(V)需要胞质和外膜中的甲萘醌和细胞色素

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摘要

The metal-reducing bacterium Shewanella oneidensis MR-1 displays remarkable anaerobic respiratory plasticity, which is reflected in the extensive number of electron transport components encoded in its genome. In these studies, several cell components required for the reduction of vanadium(V) were determined. V(V) reduction is mediated by an electron transport chain which includes cytoplasmic membrane components (menaquinone and the tetraheme cytochrome CymA) and the outer membrane (OM) cytochrome OmcB. A partial role for the OM cytochrome OmcA was evident. Electron spin resonance spectroscopy demonstrated that V(V) was reduced to V(IV). V(V) reduction did not support anaerobic growth. This is the first report delineating specific electron transport components that are required for V(V) reduction and of a role for OM cytochromes in the reduction of a soluble metal species.
机译:还原金属细菌沙瓦氏菌(Shewanella oneidensis)MR-1显示出卓越的厌氧呼吸可塑性,这反映在其基因组中编码的大量电子传输成分中。在这些研究中,确定了减少钒(V)所需的几种电池成分。 V(V)还原是由电子传输链介导的,该传输链包括细胞质膜成分(甲萘醌和四血红素细胞色素CymA)和外膜(OM)细胞色素OmcB。 OM细胞色素OmcA的部分作用是显而易见的。电子自旋共振光谱表明,V(V)被还原为V(IV)。 V(V)的减少不支持无氧生长。这是第一份报告,描述了V(V)还原所需的特定电子传输成分,以及OM细胞色素在可溶性金属物质还原中的作用。

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