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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Redox-linked conformation change and electron transfer between monoheme c-type cytochromes and oxides
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Redox-linked conformation change and electron transfer between monoheme c-type cytochromes and oxides

机译:氧化还原相关的构象变化和单血红素c型细胞色素与氧化物之间的电子转移

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摘要

Electron transfer between redox active proteins and mineral oxides is important in a variety of natural as well as technological processes, including electron transfer from dissimilatory metal-reducing bacteria to minerals. One of the pathways that could trigger electron transfer between proteins and minerals is redox-linked conformation change. We present electrochemical evidence that mitochondrial cytochrorne c (Mee) undergoes significant conformation change upon interaction with hematite and indiurn-tin oxide (ITO) surfaces. The apparent adsorption-induced conformation change causes the protein to become more reducing, which makes it able to transfer electrons to the hematite conduction band. Although Mcc is not a protein thought to be involved in interaction with mineral surfaces, it shares (or can be conformed so as to share) some characteristics with multiheme outer-membrane cytochromes thought to be involved in the transfer of electrons from dissimilatory iron-reducing bacteria to ferric minerals during respiration. We present evidence that a 10.1 kDa monohoeme cytochrorne isolated and purified from Acidiphilium cryptum, with properties similar to those of Mcc, also undergoes conformation change as a result of interaction with hematite surfaces. (c) 2006 Elsevier Inc. All rights reserved.
机译:氧化还原活性蛋白和矿物质氧化物之间的电子转移在各种自然和技术过程中都很重要,包括从异化金属还原细菌到矿物质的电子转移。可能触发蛋白质与矿物质之间电子转移的途径之一是氧化还原相关的构象变化。我们目前提供的电化学证据表明,线粒体cytochrne c(Mee)与赤铁矿和氧化铟锡(ITO)表面相互作用时发生显着的构象变化。明显的吸附诱导的构象变化使蛋白质变得更加还原,从而使其能够将电子转移至赤铁矿导带。尽管Mcc不是一种与矿物质表面相互作用的蛋白质,但它与多血红素外膜细胞色素具有某些特征(或可以一致,以便共享),这些特征涉及异化铁还原过程中电子的转移。细菌在呼吸过程中转化为铁矿物质。我们目前的证据表明,从与酸隐孢子虫分离和纯化的10.1 kDa的单hoe细胞提纯物,具有与Mcc相似的性质,还由于与赤铁矿表面的相互作用而发生构象变化。 (c)2006 Elsevier Inc.保留所有权利。

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