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Metalloprotein electron transfer reactions: analysis of reactivity of horse heart cytochrome c with inorganic complexes.

机译:金属蛋白电子转移反应:分析马心脏细胞色素c与无机配合物的反应性。

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摘要

The reactions of horse heart cytochrome c with Fe(ethylenediaminetetraacetate)2-, Co(1,10-phenanthroline)3(3+), Ru(NH3)6(2+), and Fe(CN)6(3-) have been analyzed within the formalism of the Marcus theory of outer-sphere electron transfer, including compensation for electrostatic interactions. Calculated protein self-exchange rate constants based on crossreactions are found to vary over three orders of magnitude, decreasing according to Fe(CN)6(3-) greater than Ru(NH3)6(2+) greater than Fe(EDTA)2-. The reactivity order suggests that the mechanism of electron transfer involves attack by the small molecule reagents near the most nearly exposed region of the heme; this attack is affected by electrostatic interactions with the positively charged protein, by hydrophobic interactions that permit reagent penetration of the protein surface, and by the availability of pi symmetry ligand (or extended metal) orbitals that can overlap with the pi redox orbitals of the heme group.
机译:马心脏细胞色素c与Fe(乙二胺四乙酸)2-,Co(1,10-菲咯啉)3(3 +),Ru(NH3)6(2+)和Fe(CN)6(3-)的反应具有在外层电子转移的马库斯理论的形式主义内进行了分析,包括对静电相互作用的补偿。发现基于交叉反应的蛋白质自交换率常数在三个数量级上变化,随着Fe(CN)6(3-)大于Ru(NH3)6(2+)大于Fe(EDTA)2而减小-反应顺序表明,电子转移的机制涉及血红素最接近暴露区域附近的小分子试剂的攻击;这种攻击受到与带正电荷的蛋白质的静电相互作用,允许试剂渗透到蛋白质表面的疏水相互作用以及与血红素的pi氧化还原轨道重叠的pi对称配体(或扩展金属)轨道的可用性的影响组。

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