首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Redox pathways in electron-transfer proteins: correlations between reactivities solvent exposure and unpaired-spin-density distributions.
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Redox pathways in electron-transfer proteins: correlations between reactivities solvent exposure and unpaired-spin-density distributions.

机译:电子转移蛋白中的氧化还原途径:反应性溶剂暴露和不成对的自旋密度分布之间的相关性。

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摘要

The relative reactivities toward reduction by free flavin semiquinones of cytochromes (c-type cytochromes, cytochrome b5, c'-type cytochromes) iron-sulfur proteins (high-redox-potential ferredoxins, rubredoxins, low-redox-potential ferredoxins), and blue copper proteins (plastocyanin, azurins) are shown to correlate with calculations of the solvent exposure of the various prosthetic groups. In the case of the c-type cytochromes, one of the major centers of exposure is the sulfur atom of the thioether bridge that covalently links heme ring C to the protein. Charge-iterative extended Hückel calculations on a heme c model indicate that both porphyrin pi and Fe(III)d pi orbitals can delocalize onto the bridging sulfur atom. Unpaired spin densities are comparable to those obtained for individual aromatic porphyrin ring carbon atoms. Thus, the exposed sulfur of ring C may act to facilitate electron transfer.
机译:游离黄素半醌还原细胞色素(c型细胞色素,细胞色素b5,c'型细胞色素),铁硫蛋白(高氧化还原电位的铁氧还蛋白,rubredoxins,低氧化还原电位的铁氧还蛋白)的相对反应性铜蛋白(质体蓝蛋白,天青蛋白)被证明与各种修复基团的溶剂暴露计算有关。就c型细胞色素而言,主要的暴露中心之一是将血红素环C与蛋白质共价连接的硫醚桥的硫原子。在血红素c模型上进行的电荷迭代扩展Hückel计算表明,卟啉pi和Fe(III)d pi轨道都可以离域到桥接硫原子上。未成对的自旋密度与单个芳香族卟啉环碳原子获得的自旋密度相当。因此,环C的暴露的硫可以起到促进电子转移的作用。

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