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通过时间分辨表面增强共振拉曼光谱和电化学研究吸附在仿生电极上的细胞色素c(552)的电子转移反应动力学。

Kinetics of the electron transfer reaction of Cytochrome c (552) adsorbed on biomimetic electrode studied by time-resolved surface-enhanced resonance Raman spectroscopy and electrochemistry.

作者信息

Bernad Sophie, Leygue Nadine, Korri-Youssoufi Hafsa, Lecomte Sophie

机构信息

LADIR, CNRS/UPMC (UMR 7075), 2 rue Henri Dunant, 94320, Thiais, France.

出版信息

Eur Biophys J. 2007 Nov;36(8):1039-48. doi: 10.1007/s00249-007-0173-z. Epub 2007 Jun 5.

Abstract

Cytochrome c (552) (Cyt-c (552)) and its redox partner ba ( 3 )-oxidase from Thermus thermophilus possess structural differences compared with Horse heart cytochrome c (cyt-c)/cytochrome c oxidase (CcO) system, where the recognition between partners and the electron transfer (ET) process is initiated via electrostatic interactions. We demonstrated in a previous study by surface-enhanced resonance Raman (SERR) spectroscopy that roughened silver electrodes coated with uncharged mixed self-assembled monolayers HS-(CH(2))( n )-CH(3)/HS-(CH(2))( n + 1)-OH 50/50, n = 5, 10 or 15, was a good model to mimic the Cyt-c (552) redox partner. All the adsorbed molecules are well oriented on such biomimetic electrodes and transfer one electron during the redox process. The present work focuses on the kinetic part of the heterogeneous ET process of Cyt-c (552) adsorbed onto electrodes coated with such mixed SAMs of different alkyl chain length. For that purpose, two complementary methods were combined. Firstly cyclic voltammetry shows that the ET between the adsorbed Cyt-c (552) and the biomimetic electrode is direct and reversible. Furthermore, it allows the estimation of both the density surface coverage of adsorbed Cyt-c (552) and the kinetic constants values. Secondly, time-resolved SERR (TR-SERR) spectroscopy showed that the ET process occurs without conformational change of the Cyt-c (552) heme group and allows the determination of kinetic constants. Results show that the kinetic constant values obtained by TR-SERR spectroscopy could be compared to those obtained from cyclic voltammetry. They are estimated at 200, 150 and 40 s(-1) for the ET of Cyt-c (552) adsorbed onto electrodes coated with mixed SAMs HS-(CH(2))( n )-CH(3)/HS-(CH(2))( n + 1)-OH 50/50, n = 5, 10 or 15, respectively.

摘要

嗜热栖热菌的细胞色素c(552)(Cyt-c(552))及其氧化还原伴侣ba(3)-氧化酶与马心脏细胞色素c(cyt-c)/细胞色素c氧化酶(CcO)系统相比,结构上存在差异,在后者中,伴侣之间的识别和电子转移(ET)过程是通过静电相互作用启动的。我们在之前的一项研究中通过表面增强共振拉曼(SERR)光谱证明,涂覆有不带电混合自组装单分子层HS-(CH(2))(n)-CH(3)/HS-(CH(2))(n + 1)-OH 50/50(n = 5、10或15)的粗糙银电极是模拟Cyt-c(552)氧化还原伴侣的良好模型。所有吸附分子在这种仿生电极上取向良好,并在氧化还原过程中转移一个电子。目前的工作重点是吸附在涂覆有不同烷基链长度的这种混合自组装单分子层的电极上的Cyt-c(552)的异质ET过程的动力学部分。为此,结合了两种互补方法。首先,循环伏安法表明,吸附的Cyt-c(552)与仿生电极之间的ET是直接且可逆的。此外,它还可以估计吸附的Cyt-c(552)的密度表面覆盖率和动力学常数的值。其次,时间分辨SERR(TR-SERR)光谱表明,ET过程在Cyt-c(552)血红素基团没有构象变化的情况下发生,并允许确定动力学常数。结果表明,通过TR-SERR光谱获得的动力学常数的值可以与从循环伏安法获得的值进行比较。对于吸附在涂覆有混合自组装单分子层HS-(CH(2))(n)-CH(3)/HS-(CH(2))(n + 1)-OH 50/50(n = 5、10或15)的电极上的Cyt-c(552)的ET,它们分别估计为200、150和40 s(-1)。

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