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咪唑啉配体与纯化的单胺氧化酶A活性位点的相互作用。

Interactions of imidazoline ligands with the active site of purified monoamine oxidase A.

作者信息

Jones Tadeusz Z E, Giurato Laura, Guccione Salvatore, Ramsay Rona R

机构信息

Centre for Biomolecular Sciences, University of St Andrews, North Haugh, St Andrews, Fife, UK.

出版信息

FEBS J. 2007 Mar;274(6):1567-75. doi: 10.1111/j.1742-4658.2007.05704.x.

Abstract

The two forms of monoamine oxidase, monoamine oxidase A and monoamine oxidase B, have been associated with imidazoline-binding sites (type 2). Imidazoline ligands saturate the imidazoline-binding sites at nanomolar concentrations, but inhibit monoamine oxidase activity only at micromolar concentrations, suggesting two different binding sites [Ozaita A, Olmos G, Boronat MA, Lizcano JM, Unzeta M & García-Sevilla JA (1997) Br J Pharmacol121, 901-912]. When purified human monoamine oxidase A was used to examine the interaction with the active site, inhibition by guanabenz, 2-(2-benzofuranyl)-2-imidazoline and idazoxan was competitive with kynuramine as substrate, giving K(i) values of 3 microM, 26 microM and 125 microM, respectively. Titration of monoamine oxidase A with imidazoline ligands induced spectral changes that were used to measure the binding affinities for guanabenz (19.3 +/- 3.9 microM) and 2-(2-benzofuranyl)-2-imidazoline (49 +/- 8 microM). Only one type of binding site was detected. Agmatine, a putative endogenous ligand for some imidazoline sites, reduced monoamine oxidase A under anaerobic conditions, indicating that it binds close to the flavin in the active site. Flexible docking studies revealed multiple orientations within the large active site, including orientations close to the flavin that would allow oxidation of agmatine.

摘要

单胺氧化酶的两种形式,即单胺氧化酶A和单胺氧化酶B,已与咪唑啉结合位点(2型)相关联。咪唑啉配体在纳摩尔浓度下可饱和咪唑啉结合位点,但仅在微摩尔浓度下才抑制单胺氧化酶活性,这表明存在两种不同的结合位点[奥扎伊塔A、奥尔莫斯G、博罗纳特MA、利兹卡诺JM、温泽塔M和加西亚 - 塞维利亚JA(1997年)《英国药理学期刊》121,901 - 912]。当使用纯化的人单胺氧化酶A来研究其与活性位点的相互作用时,胍那苄、2 -(2 - 苯并呋喃基)- 2 - 咪唑啉和异喹胍的抑制作用与犬尿胺作为底物时具有竞争性,其抑制常数(K(i))值分别为3微摩尔、26微摩尔和125微摩尔。用咪唑啉配体滴定单胺氧化酶A会引起光谱变化,这些变化被用于测量对胍那苄(19.3±3.9微摩尔)和2 -(2 - 苯并呋喃基)- 2 - 咪唑啉(49±8微摩尔)的结合亲和力。仅检测到一种结合位点。胍丁胺是一些咪唑啉位点的假定内源性配体,在厌氧条件下可降低单胺氧化酶A的活性,这表明它在活性位点中靠近黄素的位置结合。灵活对接研究揭示了在大的活性位点内存在多种取向,包括靠近黄素的取向,这将允许胍丁胺被氧化。

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