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大鼠脑中[3H]利美尼定结合位点的药理学及亚细胞分布

Pharmacology and subcellular distribution of [3H]rilmenidine binding sites in rat brain.

作者信息

Hosseini A R, Jackman G P, King P R, Louis W J, Gundlach A L

机构信息

The University of Melbourne, Department of Medicine, Austin and Repatriation Medical Centre, Heidelberg, Victoria, Australia.

出版信息

J Auton Nerv Syst. 1998 Oct 15;72(2-3):129-36. doi: 10.1016/s0165-1838(98)00097-6.

Abstract

We have previously reported that in rat brain membranes, [3H]rilmenidine, in addition to labelling alpha2-adrenoceptors and the I2B-subtype of imidazoline receptor binding site (I2B-RBS), may label an additional I-RBS population, distinct from previously classified I1-RBS and I2-RBS. In this study, using crude or fractionated rat brain membranes we examined the possible association of [3H]rilmenidine-labelled I-RBS with the A- and B-isoforms of monoamine oxidase (MAO) by studying the inhibition of [3H]rilmenidine binding by a number of MAO inhibitors; and comparing the maximal binding density (Bmax) and subcellular distribution of [3H]rilmenidine binding sites with that of MAO-A and MAO-B catalytic sites labelled by [3H]RO41-1049 and [3H]RO19-6327 and 12-RBS labelled by [3H]2-BFI. Inhibition of [3H]rilmenidine binding by all MAO inhibitors tested produced very shallow curves (slope 0.29-0.56). Clorgyline and moclobemide (selective MAO-A inhibitors) displayed moderate affinities (60-140 nM), while pargyline (non-selective MAO-inhibitor), RO41-1049 (selective MAO-A inhibitor) and RO19-6327 (selective MAO-B inhibitor) exhibited very low affinities (> 2 microM) for 50-75% of [3H]rilmenidine-labelled I-RBS in crude brain membranes and even lower affinity for the remaining binding. Under identical buffer conditions, the Bmax of [3H]rilmenidine-labelled I-RBS (1.45+/-0.14 pmol/mg protein) was considerably lower than those of MAO-A (13.10+/-0.15 pmol/mg) and MAO-B (10.35+/-0.50 pmol/mg) sites. These results suggest that [3H]rilmenidine does not interact directly with the active catalytic site of either MAO enzyme and could at best only associate with a subpopulation of MAO molecules. Binding studies on five fractions of rat cortex homogenates-nuclear (N), heavy (M) and light (L) mitochondrial, microsomal non-mitochondrial (P), and soluble cytosolic (S) fractions-revealed that 45% of total [3H]rilmenidine binding was present in the P fraction cf. 20 and 23% in the M and L fractions, in contrast to [3H]RO19-6327 and [3H]2-BFI which bound 11-13% in the P fraction and 36-38% and 35-44% in the M and L fractions, respectively. Binding of all ligands in the N fraction was 6-15% of total. These studies reveal that [3H]rilmenidine-labelled I-RBS, unlike the I2-RBS, are not predominantly associated with mitochondrial fractions containing the MAO enzymes (and cytochrome oxidase activity), but appear to be distributed in both the mitochondrial and plasma membrane fractions in rat cerebral cortex.

摘要

我们之前曾报道,在大鼠脑膜中,[3H]利美尼定除了标记α2-肾上腺素能受体和咪唑啉受体结合位点(I2B-RBS)的I2B亚型外,可能还标记了另一种I-RBS群体,与先前分类的I1-RBS和I2-RBS不同。在本研究中,我们使用粗制或分级分离的大鼠脑膜,通过研究多种单胺氧化酶(MAO)抑制剂对[3H]利美尼定结合的抑制作用,以及比较[3H]利美尼定结合位点与由[3H]RO41-1049和[3H]RO19-6327标记的MAO-A和MAO-B催化位点以及由[3H]2-BFI标记的I2-RBS的最大结合密度(Bmax)和亚细胞分布,来研究[3H]利美尼定标记的I-RBS与MAO的A和B同工型之间的可能关联。所有测试的MAO抑制剂对[3H]利美尼定结合的抑制作用产生的曲线都非常平缓(斜率为0.29 - 0.56)。氯吉兰和吗氯贝胺(选择性MAO-A抑制剂)表现出中等亲和力(60 - 140 nM),而帕吉林(非选择性MAO抑制剂)、RO41-1049(选择性MAO-A抑制剂)和RO19-6327(选择性MAO-B抑制剂)对粗制脑膜中50 - 75%的[3H]利美尼定标记的I-RBS表现出非常低的亲和力(> 2 μM),对其余结合的亲和力甚至更低。在相同的缓冲条件下,[3H]利美尼定标记的I-RBS的Bmax(1.45±0.14 pmol/mg蛋白)明显低于MAO-A(13.10±0.15 pmol/mg)和MAO-B(10.35±0.50 pmol/mg)位点。这些结果表明,[3H]利美尼定不直接与任何一种MAO酶的活性催化位点相互作用,最多只能与MAO分子的一个亚群相关联。对大鼠皮质匀浆的五个组分——核(N)、重(M)和轻(L)线粒体、微粒体非线粒体(P)和可溶性胞质(S)组分——的结合研究表明,[3H]利美尼定总结合量的45%存在于P组分中,相比之下,M和L组分中分别为20%和23%,而[3H]RO19-6327和[3H]2-BFI在P组分中的结合量分别为11 - 13%,在M和L组分中分别为36 - 38%和35 - 44%。所有配体在N组分中的结合量占总量的6 - 15%。这些研究表明,与I2-RBS不同,[3H]利美尼定标记的I-RBS并不主要与含有MAO酶(和细胞色素氧化酶活性)的线粒体组分相关,而是似乎分布在大鼠大脑皮质的线粒体和质膜组分中。

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