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单胺氧化酶上I2-咪唑啉结合位点的定位

Localization of I2-imidazoline binding sites on monoamine oxidases.

作者信息

Tesson F, Limon-Boulez I, Urban P, Puype M, Vandekerckhove J, Coupry I, Pompon D, Parini A

机构信息

Institut National de la Santé et de la Recherche Médicale (INSERM U 388), Institut Louis Bugnard, CHU Rangueil, Toulouse, France.

出版信息

J Biol Chem. 1995 Apr 28;270(17):9856-61. doi: 10.1074/jbc.270.17.9856.

Abstract

Imidazoline binding sites (IBS) were proposed to be responsible for some of the pharmacological and therapeutic activities of imidazoline and related compounds and have been classified into two subtypes, I1BS and I2BS. Convergent studies attribute a role in central blood pressure regulation to the I1BS. In contrast, the function of I2BS remains unknown. In the present study, by combining biochemical and molecular biology approaches, we show that 1) microsequencing of I2BS purified from rabbit kidney mitochondria allowed the recovery of four peptide sequence stretches displaying up to 85.7% similarity with human, rat, and bovine monoamine oxidases (MAO)-A and -B; 2) I2BS and MAO displayed identical biophysical characteristics as their activities, measured by [3H]idazoxan binding and [14C]tyramine oxidation, respectively, could not be separated using various chromatographic procedures; and 3) heterologous expression of human placenta MAO-A and human liver MAO-B in yeast, inherently devoid of I2BS and MAO activities, led to the coexpression of [3H]idazoxan binding sites displaying ligand-recognition properties typical of I2BS. These results show definitely that I2BS is located on both MAO-A and -B. The fact that I2BS ligands inhibited MAO activity independently of the interaction with the catalytic region suggests that I2BS might be a previously unknown MAO regulatory site.

摘要

咪唑啉结合位点(IBS)被认为与咪唑啉及相关化合物的某些药理和治疗活性有关,并已被分为两种亚型,即I1BS和I2BS。多项研究表明I1BS在中枢血压调节中发挥作用。相比之下,I2BS的功能仍然未知。在本研究中,通过结合生化和分子生物学方法,我们发现:1)对从兔肾线粒体中纯化的I2BS进行微量测序,得到了四个肽序列片段,它们与人类、大鼠和牛的单胺氧化酶(MAO)-A和-B的相似性高达85.7%;2)I2BS和MAO表现出相同的生物物理特性,因为分别通过[3H]异喹胍结合和[14C]酪胺氧化测量的它们的活性,无法通过各种色谱方法分离;3)在天然缺乏I2BS和MAO活性的酵母中异源表达人胎盘MAO-A和人肝MAO-B,导致共表达具有I2BS典型配体识别特性的[3H]异喹胍结合位点。这些结果明确表明I2BS位于MAO-A和MAO-B上。I2BS配体独立于与催化区域的相互作用而抑制MAO活性,这一事实表明I2BS可能是一个先前未知的MAO调节位点。

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