首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Correlation between rate constant for reduction and redox potential as a basis for systematic investigation of reaction mechanisms of electron transfer proteins.
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Correlation between rate constant for reduction and redox potential as a basis for systematic investigation of reaction mechanisms of electron transfer proteins.

机译:还原速率常数与氧化还原电位之间的相关性作为系统研究电子转移蛋白反应机理的基础。

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摘要

Rate constants for the reduction of approximately 40 electron transfer proteins by photoreduced flavins have been determined by laser flash photolysis techniques. The data for a series of 12 homologous cytochromes and 10 homologous high redox potential ferredoxins (HiPIPs) are in excellent agreement with semi-empirical equations relating rate constant and thermodynamic redox potential that have proven applicable to nonbiological electron transfer systems. These correlations allow the establishment of relative reactivities within structurally homologous classes of biological oxidation-reduction proteins, including cytochromes and HiPIPs, and a variety of nonhomologous heme-, iron-sulfur-, copper-, and flavin-containing proteins. A qualitative correspondence is shown to exist between such relative reactivity and the extent of solvent exposure of the redox centers in a particular structural class. The implications of these results are considered, and it is concluded that free energy relationships provide a sound basis for systematic analysis of reaction mechanisms of electron transfer proteins.
机译:已经通过激光闪光光解技术确定了通过光还原的黄素还原大约40个电子转移蛋白的速率常数。一系列12种同源细胞色素和10种同源高氧化还原电位铁氧还蛋白(HiPIP)的数据与有关速率常数和热力学氧化还原电位的半经验方程式非常吻合,这些方程式已被证明适用于非生物电子转移系统。这些相关性允许在结构上同源的生物氧化还原蛋白(包括细胞色素和HiPIP)以及各种非同源的血红素,铁硫,铜和黄素蛋白中建立相对反应性。在这种相对反应性与特定结构类别中氧化还原中心的溶剂暴露程度之间存在定性对应。考虑了这些结果的含义,并得出结论,自由能关系为系统分析电子转移蛋白的反应机理提供了良好的基础。

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