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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Solution-Based Structural Analysis of the Decaheme Cytochrome, MtrA, by Small-Angle X-ray Scattering and Analytical Ultracentrifugation
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Solution-Based Structural Analysis of the Decaheme Cytochrome, MtrA, by Small-Angle X-ray Scattering and Analytical Ultracentrifugation

机译:基于溶液的小角X射线散射和分析超离心分析法对十全血红素MtrA的基于结构的分析

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摘要

The potential exploitation of metal-reducing bacteria as a means for environmental cleanup or alternative fuel is an exciting prospect; however, the cellular processes that would allow for these applications need to be better understood. MtrA is a periplasmic decaheme c-type cytochrome from Shewanella oneidensis involved in the reduction of extracellular iron oxides and therefore is a critical element in Shewanella ability to engage in extracellular charge transfer. As a relatively small 333-residue protein, the heme content is surprisingly high. MtrA is believed to obtain electrons from the inner membrane-bound quinol oxidoreductase, CymA, and shuttle them across the outer membrane to MtrC, another decaheme cytochrome that directly interacts with insoluble metal oxides. How MtrA is able to perform this task is a question of interest. Here through the use of two solution-based techniques, small-angle X-ray scattering (SAXS) and analytical ultracentrifugation (AUC), we present the first structural analysis of MtrA Our results establish that between 0.5 and 4 mg/mL, MtrA exists as a monomelic protein that is shaped like an extended molecular "wire" with a maximum protein dimension (D_(max)) of 104 A and a rod-like aspect ratio of 2.2 to 2.5. This study contributes to a greater understanding of how MtrA fulfills its role in the redox processes that must occur before electrons reach the outside of the cell.
机译:潜在地利用金属还原细菌作为环境清洁或替代燃料的手段是令人兴奋的前景;然而,需要更好地理解允许这些应用的细胞过程。 MtrA是一种来自Shewanella oneidensis的周质十全血c型细胞色素,参与细胞外铁氧化物的还原,因此是Shewanella参与细胞外电荷转移能力的关键要素。作为相对较小的333残基蛋白质,血红素含量高得惊人。据信MtrA从与内膜结合的奎奴尔氧化还原酶CymA获得电子,并将它们穿过外膜穿梭至MtrC,MtrC是另一种与不溶性金属氧化物直接相互作用的十色细胞色素。 MtrA如何执行此任务是一个令人感兴趣的问题。在这里,通过使用两种基于溶液的技术,小角度X射线散射(SAXS)和分析超速离心(AUC),我们进行了MtrA的首次结构分析。我们的结果表明,存在0.5至4 mg / mL的MtrA作为单体蛋白质,其形状像延伸的分子“线”,最大蛋白质尺寸(D_(max))为104 A,杆状长宽比为2.2至2.5。这项研究有助于进一步了解MtrA如何在电子到达细胞外部之前必须发生的氧化还原过程中发挥其作用。

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