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黄嘌呤氧化还原酶的结构与功能:我们目前的进展如何?

Structure and function of xanthine oxidoreductase: where are we now?

作者信息

Harrison Roger

机构信息

Department of Biology and Biochemistry, University of Bath, Bath, UK.

出版信息

Free Radic Biol Med. 2002 Sep 15;33(6):774-97. doi: 10.1016/s0891-5849(02)00956-5.

Abstract

Xanthine oxidoreductase (XOR) is a complex molybdoflavoenzyme, present in milk and many other tissues, which has been studied for over 100 years. While it is generally recognized as a key enzyme in purine catabolism, its structural complexity and specialized tissue distribution suggest other functions that have never been fully identified. The publication, just over 20 years ago, of a hypothesis implicating XOR in ischemia-reperfusion injury focused research attention on the enzyme and its ability to generate reactive oxygen species (ROS). Since that time a great deal more information has been obtained concerning the tissue distribution, structure, and enzymology of XOR, particularly the human enzyme. XOR is subject to both pre- and post-translational control by a range of mechanisms in response to hormones, cytokines, and oxygen tension. Of special interest has been the finding that XOR can catalyze the reduction of nitrates and nitrites to nitric oxide (NO), acting as a source of both NO and peroxynitrite. The concept of a widely distributed and highly regulated enzyme capable of generating both ROS and NO is intriguing in both physiological and pathological contexts. The details of these recent findings, their pathophysiological implications, and the requirements for future research are addressed in this review.

摘要

黄嘌呤氧化还原酶(XOR)是一种复杂的钼黄素酶,存在于牛奶和许多其他组织中,人们对其研究已超过100年。虽然它通常被认为是嘌呤分解代谢中的关键酶,但其结构复杂性和特殊的组织分布表明它还具有一些尚未完全明确的其他功能。20多年前发表的一篇将XOR与缺血再灌注损伤联系起来的假说,使对该酶及其产生活性氧(ROS)能力的研究受到关注。从那时起,人们获得了大量关于XOR的组织分布、结构和酶学,尤其是人类XOR的信息。XOR在翻译前和翻译后受一系列机制的调控,以响应激素、细胞因子和氧张力。特别有趣的是发现XOR可以催化硝酸盐和亚硝酸盐还原为一氧化氮(NO),作为NO和过氧亚硝酸盐的来源。一种广泛分布且受到高度调控、能够产生活性氧和一氧化氮的酶的概念,在生理和病理背景下都很吸引人。本文综述了这些最新发现的细节、它们的病理生理学意义以及未来研究的要求。

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