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为单胺氧化酶B催化作用提出的铵阳离子自由基机制:是否存在其他机制?

Aminium cation radical mechanism proposed for monoamine oxidase B catalysis: are there alternatives?

作者信息

Edmondson D E

机构信息

Department of Biochemistry, Emory University School of Medicine, Rollins Research Center, Atlanta, GA 30322-3050, USA.

出版信息

Xenobiotica. 1995 Jul;25(7):735-53. doi: 10.3109/00498259509061889.

Abstract
  1. The interaction of bovine liver mitochondrial monoamine oxidase B (MAO B) with a series of benzylamine analogues was investigated to provide mechanistic information relative to the proposed cation radical mechanism and to provide information on the structural requirements of the substrate binding site. 2. Steady-state kinetic analysis of MAO B with 11 ring-substituted benzylamine analogues showed substitution does not alter the reaction pathway. All amine analogues tested exhibit sizeable deuterium kinetic isotope effects. 3. Anaerobic stopped-flow kinetic studies showed (1) C-H bond cleavage is rate-limiting in enzyme-bound flavin reduction and (2) that no specially detectable flavin radicals are observed. 4. The binding affinity of para-substituted benzylamine analogues to MAO B increased as the hydrophobicity of the substituent increased. In contrast, meta-substitution of the ring showed reduced affinity with an increase in the van der Waals volume of the substituent. 5. The rate of enzyme reduction by para-substitution exhibited a strong negative dependence with the Taft (Es) steric value of the substituent. In contrast, the rate of enzyme reduction by meta-substituted benzylamines is independent of the nature of the substituent. 6. para-Substituted N,N-dimethylbenzylamine analogues are not substrates for MAO B but are competitive inhibitors of benzylamine oxidation with a weaker affinity with increasing van der Waals volume of the substituent. In contrast, meta-substituted N,N-dimethyl benzylamine analogues are weak substrates for MAO B with oxidation occurring exclusively at the benzyl carbon. 7. The consequences of these results on the possible mechanisms (aminium cation radical, H abstraction, and nucleophilic mechanism) for C-H bond cleavage proposed for MAO B are discussed.
摘要
  1. 研究了牛肝线粒体单胺氧化酶B(MAO B)与一系列苄胺类似物的相互作用,以提供与所提出的阳离子自由基机制相关的机理信息,并提供有关底物结合位点结构要求的信息。2. 对MAO B与11种环取代苄胺类似物进行的稳态动力学分析表明,取代作用不会改变反应途径。所有测试的胺类似物均表现出可观的氘动力学同位素效应。3. 厌氧停流动力学研究表明:(1)C-H键断裂是酶结合黄素还原的限速步骤;(2)未观察到特别可检测的黄素自由基。4. 对位取代苄胺类似物与MAO B的结合亲和力随着取代基疏水性的增加而增加。相比之下,环的间位取代显示随着取代基范德华体积的增加亲和力降低。5. 对位取代导致的酶还原速率与取代基的塔夫脱(Es)空间值呈强烈负相关。相比之下,间位取代苄胺导致的酶还原速率与取代基的性质无关。6. 对位取代的N,N-二甲基苄胺类似物不是MAO B的底物,而是苄胺氧化的竞争性抑制剂,随着取代基范德华体积的增加,亲和力减弱。相比之下,间位取代的N,N-二甲基苄胺类似物是MAO B的弱底物,氧化仅发生在苄基碳上。7. 讨论了这些结果对MAO B提出的C-H键断裂可能机制(铵阳离子自由基、氢提取和亲核机制)的影响。

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