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三甲胺脱氢酶C30A突变体与二乙甲胺的反应。

Reaction of the C30A mutant of trimethylamine dehydrogenase with diethylmethylamine.

作者信息

Huang L, Scrutton N S, Hille R

机构信息

Department of Medical Biochemistry, Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Biol Chem. 1996 Jun 7;271(23):13401-6. doi: 10.1074/jbc.271.23.13401.

Abstract

The role played by the 6-S-cysteinyl-FMN bond of trimethylamine dehydrogenase in the reductive half-reaction of the enzyme has been studied by following the reaction of the slow substrate diethylmethylamine with a C30A mutant of the enzyme lacking the covalent flavin attachment to the polypeptide. Removal of the 6-S-cysteinyl-FMN bond diminishes the limiting rate for the first of the three observed kinetic phases of the reaction by a factor of 6, but has no effect on the rate constants for the two subsequent kinetic phases. The flavin in the C30A enzyme recovered from the reaction of the C30A enzyme with excess substrate is found to have been converted to the 6-hydroxy derivative, rendering the enzyme inactive. The noncovalently bound FMN of the C30A mutant enzyme is also converted to 6-hydroxy-FMN and rendered inactive upon reduction with excess trimethylamine, but not by reduction with dithionite, even at high pH or in the presence of the effector tetramethylammonium chloride. These results suggest that one significant role of the 6-S-cysteinyl-FMN bond is to prevent the inactivation of the enzyme during catalysis. A reaction mechanism is proposed whereby OH- attacks C-6 of a flavin-substrate covalent adduct in the course of steady-state turnover to form 6-hydroxy-FMN.

摘要

通过跟踪慢底物二乙甲基胺与缺乏与多肽共价结合黄素的该酶的C30A突变体的反应,研究了三甲胺脱氢酶的6-S-半胱氨酰-FMN键在该酶还原半反应中所起的作用。去除6-S-半胱氨酰-FMN键使反应观察到的三个动力学阶段中第一个阶段的极限速率降低了6倍,但对随后两个动力学阶段的速率常数没有影响。从C30A酶与过量底物的反应中回收的C30A酶中的黄素被发现已转化为6-羟基衍生物,使该酶失活。C30A突变体酶的非共价结合FMN在用过量三甲胺还原时也会转化为6-羟基-FMN并失活,但在用连二亚硫酸盐还原时不会失活,即使在高pH值或存在效应物四甲基氯化铵的情况下也是如此。这些结果表明,6-S-半胱氨酰-FMN键的一个重要作用是防止酶在催化过程中失活。提出了一种反应机制,即在稳态周转过程中,OH-攻击黄素-底物共价加合物的C-6以形成6-羟基-FMN。

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