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静电对c型细胞色素氧化还原反应动力学的影响。

Electrostatic effects on the kinetics of oxidation-reduction reactions of c-type cytochromes.

作者信息

Goldkorn T, Schejter A

出版信息

J Biol Chem. 1979 Dec 25;254(24):12562-6.

PMID:227900
Abstract

The kinetics of the oxidation-reduction reactions between horse heart cytochrome c, Euglena gracilis cytochrome c552, and ions (ascorbate, ferricyanide, and ferrocyanide) was investigated as a function of ionic strength at pH 7, 25 degrees C. The ionic strength was varied between 0.002 and 0.02 M. Data were analyzed according to four different functions of ionic strength. Results showed that the Kirkwood-Tanford smeared charge model holds well for the calculation of the activity coefficients and that the whole charges of these proteins are reflected in the rates of their reactions. Chemical modifications or changes in the pH that altered the charge of the proteins affected the primary salt effects as predicted by the smeared charge model.

摘要

在25℃、pH 7条件下,研究了马心细胞色素c、纤细裸藻细胞色素c552与离子(抗坏血酸盐、铁氰化物和亚铁氰化物)之间氧化还原反应的动力学与离子强度的关系。离子强度在0.002至0.02 M之间变化。根据离子强度的四种不同函数对数据进行了分析。结果表明,Kirkwood-Tanford涂抹电荷模型在计算活度系数方面表现良好,并且这些蛋白质的总电荷反映在其反应速率中。化学修饰或pH值的变化改变了蛋白质的电荷,如涂抹电荷模型所预测的那样,影响了一级盐效应。

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