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醛氧化酶在药物代谢中的作用。

The role of aldehyde oxidase in drug metabolism.

机构信息

Laboratory of Molecular Biology, Istituto di Ricerche Farmacologiche Mario Negri, via La Masa 19, 20156 Milano, Italy.

出版信息

Expert Opin Drug Metab Toxicol. 2012 Apr;8(4):487-503. doi: 10.1517/17425255.2012.663352. Epub 2012 Feb 16.

Abstract

INTRODUCTION

Aldehyde oxidases (AOXs) are molybdo-flavoenzymes with complex evolutionary profiles, as the number and types of active AOX genes vary according to the animal species considered. Humans and higher primates have a single functional AOX1 gene, while rodents are endowed with four AOXs. Along with the endoplasmic cytochrome P450 system (CYP450), cytoplasmic AOX1 is the major enzyme involved in the hepatic phase I metabolism of numerous xenobiotics.

AREAS COVERED

The authors review literature to highlight the fact that aldehydes are not the only AOX substrates, as aza- and oxo-heterocycles, that represent the scaffold of many drugs, are also oxidized efficiently by these enzymes. Additionally, the ndefine the different complements of AOX isoenzymes expressed in humans and animal models used in drug metabolism studies and discuss the implications. Furthermore, the authors report on human AOX1 allelic variants that alter the activity of this enzyme. Finally, they discuss the factors of potential importance in controlling the functional activity of AOX1.

EXPERT OPINION

There is evidence for an increasing relevance of AOX1 in the metabolism and clearance of new drugs, as measures aiming at controlling CYP450-dependent metabolism of prospective therapeutic agents are becoming routine. This calls for investigations into the biology, catalytic properties and substrate specificity of human AOX1.

摘要

简介

醛氧化酶(AOXs)是具有复杂进化特征的钼黄素酶,因为根据所考虑的动物物种,活性 AOX 基因的数量和类型有所不同。人类和高等灵长类动物只有一个功能性 AOX1 基因,而啮齿动物则有四个 AOX。与内质网细胞色素 P450 系统(CYP450)一起,细胞质 AOX1 是参与许多外源化学物质肝相 I 代谢的主要酶。

涵盖领域

作者查阅文献,强调了一个事实,即醛类并不是 AOX 的唯一底物,因为氮杂和氧杂杂环,作为许多药物的支架,也能被这些酶有效地氧化。此外,作者还定义了在药物代谢研究中使用的人类和动物模型中表达的不同 AOX 同工酶的互补物,并讨论了其意义。此外,作者还报告了人类 AOX1 等位基因变异,这些变异改变了这种酶的活性。最后,他们讨论了控制 AOX1 功能活性的潜在重要因素。

专家意见

有证据表明 AOX1 在新药物的代谢和清除中的相关性越来越大,因为旨在控制潜在治疗药物的 CYP450 依赖性代谢的措施已成为常规。这需要对人类 AOX1 的生物学、催化特性和底物特异性进行研究。

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