首页> 美国卫生研究院文献>Journal of Bacteriology >Characterization of Axial and Proximal Histidine Mutations of the Decaheme Cytochrome MtrA from Shewanella sp. Strain ANA-3 and Implications for the Electron Transport System
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Characterization of Axial and Proximal Histidine Mutations of the Decaheme Cytochrome MtrA from Shewanella sp. Strain ANA-3 and Implications for the Electron Transport System

机译:希瓦氏菌属的十倍体细胞色素MtrA的轴向和近端组氨酸突变的表征。 ANA-3菌株及其对电子传输系统的影响

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摘要

Extracellular respiration of solid-phase electron acceptors in some microorganisms requires a complex chain of multiheme c-type cytochromes that span the inner and outer membranes. In Shewanella species, MtrA, an ∼35-kDa periplasmic decaheme c-type cytochrome, is an essential component for extracellular respiration of iron(III). The exact mechanism of electron transport has not yet been resolved, but the arrangement of the polypeptide chain may have a strong influence on the capability of the MtrA cytochrome to transport electrons. The iron hemes of MtrA are bound to its polypeptide chain via proximal (CXXCH) and distal histidine residues. In this study, we show the effects of mutating histidine residues of MtrA to arginine on protein expression and extracellular respiration using Shewanella sp. strain ANA-3 as a model organism. Individual mutations to six out of nine proximal histidines in CXXCH of MtrA led to decreased protein expression. However, distal histidine mutations resulted in various degrees of protein expression. In addition, the effects of histidine mutations on extracellular respiration were tested using ferrihydrite and current production in microbial fuel cells. These results show that proximal histidine mutants were unable to reduce ferrihydrite. Mutations to the distal histidine residues resulted in various degrees of ferrihydrite reduction. These findings indicate that mutations to the proximal histidine residues affect MtrA expression, leading to loss of extracellular respiration ability. In contrast, mutations to the distal histidine residues are less detrimental to protein expression, and extracellular respiration can proceed.
机译:在某些微生物中,固相电子受体的胞外呼吸需要跨越内膜和外膜的复杂的多血红素c型细胞色素链。在希瓦氏菌中,MtrA是一种约35kDa的周质十聚体c型细胞色素,是铁(III)细胞外呼吸的重要成分。电子传输的确切机制尚未得到解决,但是多肽链的排列可能对MtrA细胞色素传输电子的能力有很大影响。 MtrA的铁血红素通过近端(CXXCH)和远端组氨酸残基结合至其多肽链。在这项研究中,我们显示了使用Shewanella sp将MtrA的组氨酸残基突变为精氨酸对蛋白质表达和细胞外呼吸的影响。 ANA-3菌株作为模型生物。 MtrA的CXXCH中9个近端组氨酸中的6个发生个体突变,导致蛋白质表达降低。但是,远端的组氨酸突变导致了不同程度的蛋白质表达。另外,使用亚铁水合物和微生物燃料电池中的电流产生来测试组氨酸突变对细胞外呼吸的影响。这些结果表明,近端组氨酸突变体不能还原亚铁水合物。远端组氨酸残基的突变导致不同程度的水铁矿还原。这些发现表明,近端组氨酸残基的突变影响MtrA表达,导致细胞外呼吸能力的丧失。相反,远端组氨酸残基的突变对蛋白质表达的危害较小,并且可以进行细胞外呼吸。

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