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巴氏芽孢梭菌氢化酶对甲基紫精的氧化还原动力学。

The kinetics of methyl viologen oxidation and reduction by the hydrogenase from Clostridium pasteurianum.

作者信息

Erbes D L, Burris R H

出版信息

Biochim Biophys Acta. 1978 Jul 7;525(1):45-54. doi: 10.1016/0005-2744(78)90198-5.

Abstract

A mechanism for the reduction and oxidation of methyl viologen by Clostridium pasteurianum hydrogenase (hydrogen:ferredoxin oxidoreductase, EC 1.12.7.1) is proposed. Double reciprocal plots for methyl viologen reduction and oxidation at pH values 7.0-9.85 are linear, and the plots for reduction and oxidation are intersecting. Such data are consistent with a mechanism in which the H2 and one methyl viologen bind (either in order or randomly) with subsequent reduction and release of the methyl viologen. A second methyl viologen then is bound, reduced and released. Comparison of the calculated Keq' with the Haldane expression in which both methyl viologens react at the same rate show a large difference. This difference indicates that the two methyl viologens react at different rates. Addition of oxidized electron carriers inhibits the hydrogen-deuterium exchange reaction (i.e., the exchange of protons between H2 and 2H2O). CO reversibly inhibits methyl viologen reduction and is competitive vs. H2. O2 acts as an irreversible inhibitor.

摘要

提出了巴氏梭菌氢化酶(氢:铁氧化还原蛋白氧化还原酶,EC 1.12.7.1)还原和氧化甲基紫精的机制。在pH值7.0 - 9.85下甲基紫精还原和氧化的双倒数图呈线性,且还原和氧化的图相交。这些数据与一种机制相符,即H₂和一个甲基紫精结合(顺序或随机),随后甲基紫精被还原并释放。然后第二个甲基紫精被结合、还原并释放。将计算得到的Keq'与两个甲基紫精以相同速率反应的霍尔丹表达式进行比较,结果显示有很大差异。这种差异表明两个甲基紫精以不同速率反应。添加氧化电子载体可抑制氢 - 氘交换反应(即H₂与2H₂O之间质子的交换)。CO可逆地抑制甲基紫精的还原,并且与H₂存在竞争关系。O₂作为不可逆抑制剂。

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