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[单胺氧化酶的机制研究:MAO A和MAO B原位的意义]

[Mechanistic study of monoamine oxidase: significance for MAO A and MAO B in situ].

作者信息

Ramsay R R

机构信息

School of Biological and Medical Sciences, University of St Andrews, Scotland, U.K.

出版信息

Vopr Med Khim. 1997 Nov-Dec;43(6):457-70.

PMID:9503563
Abstract

MAO A and MAO B follow the same chemical mechanism to oxidise primary, secondary, and tertiary amines, but they are distinguished by differences in their substrate and inhibitor specificities and in their kinetic behaviour. Studies on the purified enzymes show that monoamine oxidases are unusual enzymes because certain amine substrates accelerate the oxidative half-reaction (much more in A than in B) and because substrate binding induces an enormous positive shift in the redox potential of the flavin. The molecular basis of these features is still unknown, as is the structure of the active site, information necessary for national drug design. This article reviews the biochemistry of MAO in general and speculates about what the kinetic and thermodynamic properties observed in the isolated enzymes mean for the catalytic expression of their amine oxidase activities in vivo. Specific and distinct physiological roles for MAO A and MAO B are probable because they are expressed in different proportions in different cell types and their expression varies in development and ageing. Molecular localization techniques can now be used to measure the levels of MAO in specific cell types rather than a region of mixed cells. When this information is combined with the kinetic constants, it will be possible to construct numerical models to predict the metabolism of a given amine by a particular cell which should help in understanding the role of amines in development and perhaps also the role of the endogenous inhibitors in altering levels of bioactive amines.

摘要

单胺氧化酶A和单胺氧化酶B遵循相同的化学机制来氧化伯胺、仲胺和叔胺,但它们在底物和抑制剂特异性以及动力学行为方面存在差异。对纯化酶的研究表明,单胺氧化酶是一类特殊的酶,因为某些胺底物会加速氧化半反应(单胺氧化酶A比单胺氧化酶B更明显),并且底物结合会使黄素的氧化还原电位发生巨大的正向偏移。这些特性的分子基础仍然未知,活性位点的结构也是如此,而这是合理药物设计所需的信息。本文总体上综述了单胺氧化酶的生物化学,并推测了在分离的酶中观察到的动力学和热力学性质对于其在体内胺氧化酶活性催化表达的意义。单胺氧化酶A和单胺氧化酶B可能具有特定且不同的生理作用,因为它们在不同细胞类型中的表达比例不同,并且其表达在发育和衰老过程中会发生变化。现在可以使用分子定位技术来测量特定细胞类型而非混合细胞区域中的单胺氧化酶水平。当这些信息与动力学常数相结合时,将有可能构建数值模型来预测特定细胞对给定胺的代谢,这将有助于理解胺在发育中的作用,或许也有助于理解内源性抑制剂在改变生物活性胺水平方面的作用。

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