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富马酸盐激活及多巴胺β-单加氧酶反应电子转移的合理分子机制。

Plausible molecular mechanism for activation by fumarate and electron transfer of the dopamine beta-mono-oxygenase reaction.

作者信息

Wimalasena D Shyamali, Jayatillake Samantha P, Haines Donovan C, Wimalasena Kandatege

机构信息

Department of Chemistry, Wichita State University, Wichita, KS 67260-0051, U.S.A.

出版信息

Biochem J. 2002 Oct 1;367(Pt 1):77-85. doi: 10.1042/BJ20020216.

Abstract

A series of fumarate analogues has been used to explore the molecular mechanism of the activation of dopamine beta-mono-oxygenase by fumarate. Mesaconic acid (MA) and trans -glutaconic acid (TGA) both activate the enzyme at low concentrations, similar to fumarate. However, unlike fumarate, TGA and MA interact effectively with the oxidized enzyme to inhibit it at concentrations of 1-5 mM. Monoethylfumarate (EFum) does not activate the enzyme, but inhibits it. In contrast with TGA and MA, however, EFum inhibits the enzyme by interacting with the reduced form. The saturated dicarboxylic acid analogues, the geometric isomer and the diamide of fumaric acid do not either activate or inhibit the enzyme. The phenylethylamine-fumarate conjugate, N -(2-phenylethyl)fumaramide (PEA-Fum), is an approximately 600-fold more potent inhibitor than EFum and behaves as a bi-substrate inhibitor for the reduced enzyme. The amide of PEA-Fum behaves similarly, but with an inhibition potency approximately 20-fold less than that of PEA-Fum. The phenylethylamine conjugates of saturated or geometric isomers of fumarate do not inhibit the enzyme. Based on these findings and on steady-state kinetic analysis, an electrostatic model involving an interaction between the amine group of the enzyme-bound substrate and a carboxylate group of fumarate is proposed to account for enzyme activation by fumarate. Furthermore, in light of the recently proposed model for the similar copper enzyme, peptidylglycine alpha-hydroxylating mono-oxygenase, the above electrostatic model suggests that fumarate may also play a role in efficient electron transfer between the active-site copper centres of dopamine beta-mono-oxygenase.

摘要

一系列富马酸酯类似物已被用于探索富马酸酯激活多巴胺β-单加氧酶的分子机制。甲基丙烯酸(MA)和反式戊烯二酸(TGA)在低浓度下均能激活该酶,类似于富马酸酯。然而,与富马酸酯不同的是,TGA和MA在1 - 5 mM浓度下能与氧化型酶有效相互作用并抑制它。单乙基富马酸酯(EFum)不激活该酶,但会抑制它。然而,与TGA和MA不同的是,EFum通过与还原型酶相互作用来抑制该酶。富马酸的饱和二羧酸类似物、几何异构体和二酰胺既不激活也不抑制该酶。苯乙胺-富马酸酯共轭物N -(2-苯乙基)富马酰胺(PEA-Fum)是一种比EFum强约600倍的抑制剂,对还原型酶表现为双底物抑制剂。PEA-Fum的酰胺表现类似,但抑制效力比PEA-Fum低约20倍。富马酸饱和或几何异构体的苯乙胺共轭物不抑制该酶。基于这些发现和稳态动力学分析,提出了一个静电模型,该模型涉及酶结合底物的胺基与富马酸酯的羧基之间的相互作用,以解释富马酸酯对酶的激活作用。此外,鉴于最近提出的类似铜酶——肽基甘氨酸α-羟化单加氧酶的模型,上述静电模型表明富马酸酯也可能在多巴胺β-单加氧酶活性位点铜中心之间的有效电子转移中发挥作用。

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