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首页> 外文期刊>FEMS Microbiology Letters >Involvement and specificity of Shewanella oneidensis outer membrane cytochromes in the reduction of soluble and solid-phase terminal electron acceptors
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Involvement and specificity of Shewanella oneidensis outer membrane cytochromes in the reduction of soluble and solid-phase terminal electron acceptors

机译:拟南芥外膜细胞色素在可溶性和固相末端电子受体还原中的参与和特异性

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摘要

The formation of outer membrane (OM) cytochromes seems to be a key step in the evolution of dissimilatory iron-reducing bacteria. They are believed to be the endpoints of an extended respiratory chain to the surface of the cell that establishes the connection to insoluble electron acceptors such as iron or manganese oxides. The gammaproteobacterium Shewanella oneidensis MR-1 contains the genetic information for five putative OM cytochromes. In this study, the role and specificity of these proteins were investigated. All experiments were conducted using a markerless deletion mutant in all five OM cytochromes that was complemented via the expression of single, plasmid-encoded genes. MtrC and MtrF were shown to be potent reductases of chelated ferric iron, birnessite, and a carbon anode in a microbial fuel cell. OmcA-producing cells were unable to catalyze iron and electrode reduction, although the protein was correctly produced and oriented. However, OmcA production resulted in a higher birnessite reduction rate compared with the mutant. The presence of the decaheme cytochrome SO_2931 as well as the diheme cytochrome SO_1659 did not rescue the phenotype of the deletion mutant.
机译:外膜(OM)细胞色素的形成似乎是异化还原铁细菌进化的关键步骤。据信它们是延伸到细胞表面的呼吸链的端点,该呼吸链建立了与不溶性电子受体(如铁或锰的氧化物)的连接。 γ-变形杆菌Shewanella oneidensis MR-1包含五种假定的OM细胞色素的遗传信息。在这项研究中,研究了这些蛋白质的作用和特异性。所有实验均使用所有五个OM细胞色素中的无标记缺失突变体进行,这些突变体通过单个质粒编码基因的表达得到补充。 MtrC和MtrF被证明是微生物燃料电池中螯合的三价铁,水钠锰矿和碳阳极的有效还原酶。产生OmcA的细胞无法催化铁和电极的还原,尽管该蛋白质是正确产生和定向的。然而,与突变体相比,OmcA的生产导致更高的水钠锰矿还原率。十血红素细胞色素SO_2931和二血红素细胞色素SO_1659的存在不能挽救缺失突变体的表型。

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