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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Surface-Enhanced Resonance Raman Spectroscopic and Electrochemical Study of Cytochrome c Bound on Electrodes through Coordination with Pyridinyl-Terminated Self-Assembled Monolayers
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Surface-Enhanced Resonance Raman Spectroscopic and Electrochemical Study of Cytochrome c Bound on Electrodes through Coordination with Pyridinyl-Terminated Self-Assembled Monolayers

机译:通过与吡啶基封端的自组装单分子膜的配位作用,对细胞色素c进行表面增强共振拉曼光谱和电化学研究

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摘要

Cytochrome c (Cyt-c) is immobilized on Ag and Au electrodes coated with self-assembled monolayers (SAM), comprised of pyridine-terminated alkanethiols and a shorter chain diluent thiol. Surface-enhanced resonance Raman (SERR) spectroscopy of coated Ag electrodes reveals that the adsorbed Cyt-c forms a potential-dependent coordination equilibrium with a predominant five-coordinated high-spin (5cHS) state in the reduced form and six-coordinated low-spin (6cLS) state prevailing in the oxidized form. In the oxidized species, the native Met-80 ligand of the heme is replaced by a pyridinyl residue of the bifunctional thiols that according to earlier scanning tunneling microscopy form islands in the hydrophobic monolayer. The redox potentials derived from the SERR band intensities are estimated to be -0.24 and -0.18 V (vs AgCl) for the 6cLS and 5cHS states, respectively, and lie in the range of the midpoint potential determined for Cyt-c on coated Au electrodes by cyclic voltammetry (CV). Whereas in the latter case, a nearly ideal Nernstian behavior for a one-electron couple was observed, the SERR spectroscopic analysis yields about 0.4 for the number of transferred electrons for each spin state. This discrepancy is mainly attributed to a distribution of substates of the immobilized protein in both the 6cLS and 5cHS forms, as indicated by substantial band broadening in the SERR spectra. These substates may arise from different orientations and heme pocket structures and exhibit different redox properties. Whereas SERR spectroscopy probes all adsorbed Cyt-c species including those that are largely redox inactive, CV measurements reflect only the substates that are electrochemically active.
机译:细胞色素c(Cyt-c)固定在涂有自组装单分子膜(SAM)的Ag和Au电极上,该分子由吡啶末端的烷硫醇和较短链的稀释硫醇组成。涂覆的Ag电极的表面增强共振拉曼光谱(SERR)表明,吸附的Cyt-c形成了电位依赖性配位平衡,主要为还原态的五配位高自旋(5cHS)态和六配位的低自旋态。自旋(6cLS)状态以氧化形式盛行。在被氧化的物种中,血红素的天然Met-80配体被双功能硫醇的吡啶基残基代替,双硫醇根据较早的扫描隧道显微镜在疏水性单层中形成岛。对于6cLS和5cHS态,从SERR谱带强度得出的氧化还原电势分别估计为-0.24和-0.18 V(vs AgCl),并且位于涂覆的Au电极上为Cyt-c确定的中点电势范围内通过循环伏安法(CV)。在后一种情况下,观察到单电子对的Nernstian行为近乎理想,而SERR光谱分析得出每个自旋态的转移电子数约为0.4。这种差异主要归因于固定蛋白亚状态在6cLS和5cHS形式中的分布,如SERR光谱中明显的谱带展宽所示。这些亚状态可能来自不同的方向和血红素口袋结构,并表现出不同的氧化还原特性。 SERR光谱仪可探测所有吸附的Cyt-c物质,包括那些基本上不被氧化还原的物质,而CV测量仅反映具有电化学活性的亚状态。

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