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首页> 外文期刊>Clays and clay minerals >SORPTION AND DIRECT ELECTROCHEMISTRY OF MITOCHONDRIAL CYTOCHROME C ON HEMATITE SURFACES
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SORPTION AND DIRECT ELECTROCHEMISTRY OF MITOCHONDRIAL CYTOCHROME C ON HEMATITE SURFACES

机译:线粒体细胞色素C在赤铁矿表面的吸附和直接电化学

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The interaction of cytochromes (heme proteins) with mineral surfaces is important from an environmental perspective (e.g. heavy metal remediation and reductive dehalogenation reactions), for designing biosensors and bioanalytical systems, and for emerging photovoltaic applications. In addition, the cytochrome studied here shares properties with some cytochromes from Fe-reducing bacteria and its general behavior sheds light on how other cytochromes might behave during Fe(Ⅲ) reduction. The objectives of this study were to characterize the direct electrochemistry and sorption mechanism of horse heart ferricytochrome c (a mitochondrial cytochrome referred to as Hcc) on hematite surfaces as a function of pH, time of sorption and ionic strength. Hcc sorption on hematite mainly occurs between pH 8 and 10, the pH range in which hematite surfaces and Hcc are oppositely charged. Calculated net attractive forces correspond closely with the pH range of peak sorption, suggesting that sorption is mainly electrostatically controlled. Hcc sorption with ionic strength is consistent with this conclusion. The pH-dependent conformation of Hcc sorbed on hematite appears to be different from that in solution as indicated by UV-visible spectroscopy and its more negative reduction potential compared to native Hcc. Sorption kinetics were rapid and pH-independent across the pH range 3 - 10 with slow conformational changes occurring at >60 h. Our results suggest that the electrostatic attraction of the cytochrome towards the surface orient the cytochrome for favorable electron transfer between the heme group of the cytochrome and hematite.
机译:从环境角度(例如重金属修复和还原性脱卤化反应),对于设计生物传感器和生物分析系统,以及对于新兴的光伏应用,细胞色素(血红素蛋白)与矿物表面的相互作用是重要的。此外,本文研究的细胞色素与某些还原铁细菌的细胞色素具有相同的特性,其一般行为揭示了其他细胞色素在还原Fe(Ⅲ)时的行为方式。这项研究的目的是表征赤铁矿表面上的马心脏铁细胞色素c(线粒体细胞色素,称为Hcc)的直接电化学和吸附机理与pH值,吸附时间和离子强度的关系。 Hcc在赤铁矿上的吸附主要发生在pH介于8和10之间,在该pH范围内,赤铁矿表面和Hcc的电荷相反。计算得出的净吸引力与峰值吸附的pH范围紧密对应,表明吸附主要是静电控制的。具有离子强度的Hcc吸附符合这一结论。紫外可见光谱表明,吸附在赤铁矿上的Hcc的pH依赖性构象与溶液中的构象不同,与天然Hcc相比,其负还原电位更高。在3-10的pH范围内,吸附动力学迅速且不受pH影响,在> 60 h时发生缓慢的构象变化。我们的结果表明,细胞色素对表面的静电吸引使细胞色素定向,从而在细胞色素的血红素基团和赤铁矿之间实现有利的电子转移。

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