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基于富马酸还原酶和琥珀酸脱氢酶在还原苄基紫精/富马酸测定中相反行为的分类

Classification of fumarate reductases and succinate dehydrogenases based upon their contrasting behaviour in the reduced benzylviologen/fumarate assay.

作者信息

Ackrell B A, Armstrong F A, Cochran B, Sucheta A, Yu T

机构信息

Department of Biochemistry and Biophysics, University of California, San Francisco.

出版信息

FEBS Lett. 1993 Jul 12;326(1-3):92-4. doi: 10.1016/0014-5793(93)81768-u.

Abstract

Reduction of fumarate by soluble beef heart succinate dehydrogenase has been shown previously by voltammetry to become increasingly retarded as the potential is lowered below a threshold potential of -80 mV at pH 7.5. The behaviour resembles that of a tunnel diode, an electronic device exhibiting the property of negative resistance. The enzyme thus acts to oppose fumarate reduction under conditions of high thermodynamic driving force. We now provide independent evidence for this phenomenon from spectrophotometric kinetic assays. With reduced benzylviologen as electron donor, we have studied the reduction of fumarate catalysed by various enzymes classified either as succinate dehydrogenases or fumarate reductases. For succinate dehydrogenases, the rate increases as the concentration of reduced dye (driving force) decreases during the reaction. In contrast, authentic fumarate reductases of anaerobic cells (and 'succinate dehydrogenase' from Bacillus subtilis) neither exhibit the electrochemical effect nor deviate from simple kinetic behaviour in the cuvette assay. The 'tunnel-diode' effect may thus represent an evolutionary adaptation to aerobic metabolism.

摘要

先前通过伏安法已表明,在pH 7.5时,当电位降至低于-80 mV的阈值电位时,可溶性牛心琥珀酸脱氢酶对富马酸的还原作用会越来越受到阻碍。其行为类似于隧道二极管,一种具有负电阻特性的电子器件。因此,在高热力学驱动力条件下,该酶会阻碍富马酸的还原。我们现在通过分光光度动力学测定为这一现象提供独立证据。以还原型苄基紫精作为电子供体,我们研究了由各种归类为琥珀酸脱氢酶或富马酸还原酶的酶催化的富马酸还原反应。对于琥珀酸脱氢酶,在反应过程中,随着还原染料浓度(驱动力)的降低,反应速率会增加。相比之下,厌氧细胞的正宗富马酸还原酶(以及枯草芽孢杆菌的“琥珀酸脱氢酶”)在比色皿测定中既不表现出电化学效应,也不偏离简单的动力学行为。因此,“隧道二极管”效应可能代表了对有氧代谢的一种进化适应。

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