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直接伏安法观察酵母同工酶-1-细胞色素c的苯丙氨酸-82-组氨酸变体的轴向配位和分子内重排中氧化还原驱动的变化。

Direct voltammetric observation of redox driven changes in axial coordination and intramolecular rearrangement of the phenylalanine-82-histidine variant of yeast iso-1-cytochrome c.

作者信息

Feinberg B A, Liu X, Ryan M D, Schejter A, Zhang C, Margoliash E

机构信息

Department of Chemistry, University of Wisconsin-Milwaukee 53211, USA.

出版信息

Biochemistry. 1998 Sep 22;37(38):13091-101. doi: 10.1021/bi981037n.

Abstract

Direct square-wave and cyclic voltammetric electrochemical examination of the yeast iso-1-cytochrome c Phe82His/Cys102Ser variant revealed the intricacies of redox driven changes in axial coordination, concomitant with intramolecular rearrangement. Electrochemical methods are ideally suited for such a redox study, since they provide a direct and quantitative visualization of specific dynamic events. For the iso-1-cytochrome c Phe82His/Cys102Ser variant, square-wave voltammetry showed that the primary species in the reduced state is the Met80-Fe2+-His18 coordination form, while in the oxidized state the His82-Fe3+-His18 form predominates. The addition or removal of an electron to the appropriate form of this variant serves as a switch to a new molecular form of the cytochrome. Using the 2 x 2 electrochemical mechanism, simulations were done for the cyclic voltammetry experiments at different scan rates. These, in turn, provided relative rate constants for the intramolecular rearrangement/ligand exchange and the equilibrium redox potentials of the participating coordination forms: kb,AC = 17 s-1 for Met80-Fe3+-His18 --> His82-Fe3+-His18 and kf,BD > 10 s-1 for His82-Fe2+-His18 --> Met80-Fe2+-His18; E0' = 247 mV for Met80-Fe3+/2+-His18 couple, E0' = 47 mV for His82-Fe3+/2+-His18 couple, and E0' = 176 mV for the cross-reaction couple, His82-Fe3+-His18 + e- --> Met80-Fe2+-His18. Thermodynamic parameters, including the entropy of reaction, DeltaS0'Rxn, were determined for the net reduction/rearrangement reaction, His82-Fe3+-His18 + e- --> Met80-Fe2+-His18, and compared to those for wild-type cytochrome, Met80-Fe3+-His18 + e- --> Met80-Fe2+-His18. For the Phe82His variant mixed redox couple, DeltaS0'Rxn = -80 J/mol.K compared to DeltaS0'Rxn = -52 J/mol.K for the wild-type cyt c couple without rearrangement. Comparison of these entropies indicates that the oxidized His82-Fe3+-His18 form is highly disordered. It is proposed that this high level of disorder facilitates rapid rearrangement to Met80-Fe2+-His18 upon reduction.

摘要

对酵母异 - 1 - 细胞色素c Phe82His/Cys102Ser变体进行直接方波和循环伏安电化学检测,揭示了轴向配位中氧化还原驱动变化的复杂性,同时伴随着分子内重排。电化学方法非常适合此类氧化还原研究,因为它们能直接定量地呈现特定动态事件。对于异 - 1 - 细胞色素c Phe82His/Cys102Ser变体,方波伏安法表明还原态的主要物种是Met80 - Fe2 + - His18配位形式,而氧化态时His82 - Fe3 + - His18形式占主导。向该变体的适当形式添加或去除一个电子可作为切换到细胞色素新分子形式的开关。使用2×2电化学机制,对不同扫描速率下的循环伏安实验进行了模拟。这些模拟进而提供了分子内重排/配体交换的相对速率常数以及参与配位形式的平衡氧化还原电位:Met80 - Fe3 + - His18→His82 - Fe3 + - His18的kb,AC = 17 s - 1,His82 - Fe2 + - His18→Met80 - Fe2 + - His18的kf,BD > 10 s - 1;Met80 - Fe3 +/2 + - His18电对的E0' = 247 mV,His82 - Fe3 +/2 + - His18电对的E0' = 47 mV,交叉反应电对His82 - Fe3 + - His18 + e -→Met80 - Fe2 + - His18的E0' = 176 mV。确定了净还原/重排反应His82 - Fe3 + - His18 + e -→Met80 - Fe2 + - His18的热力学参数,包括反应熵DeltaS0'Rxn,并与野生型细胞色素的Met80 - Fe3 + - His18 + e -→Met80 - Fe2 + - His18的热力学参数进行了比较。对于Phe82His变体混合氧化还原电对,DeltaS0'Rxn = - 80 J/mol.K,而无重排的野生型细胞色素c电对的DeltaS0'Rxn = - 52 J/mol.K。这些熵的比较表明氧化态的His82 - Fe3 + - His18形式高度无序。有人提出这种高度无序有助于还原时快速重排为Met80 - Fe2 + - His18。

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