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Voltammetry of a flavocytochrome c(3): the lowest potential heme modulates fumarate reduction rates.

机译:黄素细胞色素c(3)的伏安法:最低的潜在血红素调节富马酸酯的还原速率。

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摘要

Iron-induced flavocytochrome c(3), Ifc(3), from Shewanella frigidimarina NCIMB400, derivatized with a 2-pyridyl disulfide label, self-assembles on gold electrodes as a functional array whose fumarate reductase activity as viewed by direct electrochemistry is indistinguishable from that of Ifc(3) adsorbed on gold or graphite electrodes. The enhanced stability of the labeled protein's array permits analysis at a rotating electrode and limiting catalytic currents fit well to a Michaelis-Menten description of enzyme kinetics with K(M) = 56 +/- 20 microM, pH 7.5, comparable to that obtained in solution assays. At fumarate concentrations above 145 microM cyclic voltammetry shows the catalytic response to contain two features. The position and width of the lower potential component centered on -290 mV and corresponding to a one-electron wave implicates the oxidation state of the lowest potential heme of Ifc(3) as a defining feature in the mechanism of fumarate reduction at high turnover rates. We propose the operation of dual pathways for electron transfer to the active site of Ifc(3) with the lowest potential heme acting as an electron relay on one of these pathways.
机译:铁诱导的黄素细胞色素c(3),Ifc(3),来自于Shewanella frigidimarina NCIMB400,衍生自2-吡啶基二硫化物标签,在金电极上自组装为功能阵列,通过直接电化学观察,其富马酸酯还原酶活性与吸附在金或石墨电极上的Ifc(3)。标记蛋白质阵列的增强的稳定性允许在旋转电极上进行分析,并且极限催化电流很好地符合了Michaelis-Menten对酶动力学的描述,其中K(M)= 56 +/- 20 microM,pH 7.5,与在溶液测定。在富马酸盐浓度高于145 microM时,循环伏安法显示催化反应包含两个特征。以-290 mV为中心并对应于一个电子波的较低电势分量的位置和宽度暗示了Ifc(3)的最低电势血红素的氧化态是高周转率富马酸盐还原机理中的定义特征。我们提出了电子转移到Ifc(3)的活性位点的最低电子血红素作为这些路径之一上的电子中继的活动站点的双重途径的操作。

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