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Spectroscopic and electrochemical studies of horse myoglobin in dimethyl sulfoxide

机译:二甲基亚砜中马肌红蛋白的光谱和电化学研究

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This paper reports the first report of rapid, reversible direct electron transfer between a redox protein, specifically, horse myoglobin, and a solid electrode substrate in nonaqueous media and the spectroscopic (UV-vis, fluorescence, and resonance Raman) characterization of the relevant redox forms of myoglobin (Mb) in dimethyl sulfoxide (DMSO). In DMSO, the heme active site of metmyoglobin (metMB) appears to remain six-coordinate high-spin, binding water weakly. Changes in the UV_fluorescence spectra for metMb in DMSO indicate that the protein secondary structure has been perturbed and suggest that helix A has moved away from the heme. UV-vis and RR spectra for deoxyMb in DMSO suggest that the heme iron is six-coordinate lowspin, most likely coordinating DMSO. Addition of CO to deoxyMb in DMSO produces a single, photostable six-coordinate CO adduct. UV-vis and RR for Mb-CO in DMSO are consistent with a six-coordinate low-spin heme iron binding His93 weakly, if at all. The polarity of the distal heme pocket is comparable to that of the closed form of horse Mb-CO in aqueous solution, pH 7. Direct electron transfer between horse Mb and Au in DMSO solution was investigated by cyclic voltammetry. Mb exhibits stable and well-defined electrochemical responses that do not appear to be affected by the water content (1.3-7.5%). The electrochemical characteristics are consistent with a one-electron, quasi-reversible, diffusion-controlled with a one-electron, quasi-reversible, diffusion-controlled charge transfer process at Au. E° for horse Mb in DMSO at Au is -0.241 ± 0.005 V vs. NHE. The formal heterogeneous electron transfer rate constant, calculated from ΔE_p at 20mV/s, is 1.7 ± 0.5 * 10~(-4) cm/s. The rate, which is unaffected by the presence of 1.3-7.5% water, is competitive with that previously reported for horse Mb in aqueous solution.
机译:本文首次报道了氧化还原蛋白(特别是马肌红蛋白)与非水介质中固体电极底物之间快速,可逆的直接电子转移的报告,以及有关氧化还原的光谱学(紫外可见,荧光和共振拉曼)表征形式的二甲基亚砜(DMSO)中的肌红蛋白(Mb)形式。在DMSO中,肌红蛋白(metMB)的血红素活性位点似乎保持六坐标的高纺丝,弱结合水。 DMSO中metMb的UV_荧光光谱变化表明该蛋白的二级结构已受到干扰,并表明螺旋A已从血红素移开。 DMSO中脱氧Mb的UV-vis和RR光谱表明,血红素铁为六配位低旋,最可能是配位的DMSO。在DMSO中将CO添加到脱氧Mb中会产生单一的,光稳定的六配位CO加合物。 DMSO中Mb-CO的UV-vis和RR与六坐标低旋转血红素铁弱结合His93一致(如果有的话)。远端血红素袋的极性与水溶液中pH为7的封闭式马Mb-CO的极性相当。通过循环伏安法研究了DMSO溶液中马Mb和Au之间的直接电子转移。 Mb表现出稳定且定义明确的电化学响应,似乎不受水含量的影响(1.3-7.5%)。电化学特性与在Au处的单电子,准可逆,扩散受控的电荷转移过程一致。相对于NHE,Ab在DMSO中的马Mb的E°为-0.241±0.005 V.由ΔE_p在20mV / s下计算出的形式上的异质电子传输速率常数为1.7±0.5 * 10〜(-4)cm / s。该速率不受1.3-7.5%水的存在的影响,与先前报道的水溶液中的Mb具有竞争性。

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