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选择性非肽类δ阿片受体配体的药理学特征

Pharmacological profiles of selective non-peptidic delta opioid receptor ligands.

作者信息

Chaturvedi K, Jiang X, Christoffers K H, Chinen N, Bandari P, Raveglia L F, Ronzoni S, Dondio G, Howells R D

机构信息

Department of Biochemistry and Molecular Biology, University of Medicine and Dentistry of New Jersey-New Jersey Medical School, 185 South Orange Avenue, 07103, Newark, NJ, USA.

出版信息

Brain Res Mol Brain Res. 2000 Sep 15;80(2):166-76. doi: 10.1016/s0169-328x(00)00134-0.

Abstract

Several non-peptidic opioids have been synthesized recently as part of a program to develop selective delta receptor agonists. In this study, the affinities of a set of compounds for cloned delta and mu opioid receptors expressed in HEK 293 cell lines were determined by competition analysis of [3H]bremazocine binding to membrane preparations. All compounds studied exhibited high affinity and selectivity, with apparent dissociation constants in the range of 0.6-1.7 nM for the delta opioid receptor and 240-1165 nM for the mu opioid receptor. We next sought to determine which domain of the delta receptor was critical for mediating the highly selective binding by analysis of ligand affinities for mu/delta receptor chimeras. Receptor binding profiles suggested that a critical site of receptor/ligand interaction was located between transmembrane domain 5 (TM5) and TM7 of the delta receptor. Substitution of tryptophan 284, located at the extracellular surface of TM6, with lysine, which is found at the equivalent position in the mu opioid receptor, led to a spectrum of effects on affinities, depending on the ligand tested. Affinities of SB 219825 and SB 222941 were particularly sensitive to the substitution, displaying a 50-fold and 70-fold decrease in affinity, respectively. Activities of the delta receptor-selective agonists were tested in two functional assays. Brief exposure of HEK 293 cells expressing delta opioid receptors with selective ligands induced phosphorylation of MAP kinase, although the non-peptidic ligands were less efficacious than the enkephalin derivative DADL (Tyr-D-Ala-Gly-Phe-D-Leu). Similarly, chronic exposure of HEK 293 cells expressing delta opioid receptors with selective, non-peptidic ligands, with the exception of SB 206848, caused receptor down-regulation, however, the SB compounds were less efficacious than DADL.

摘要

作为开发选择性δ受体激动剂计划的一部分,最近合成了几种非肽类阿片样物质。在本研究中,通过对[3H]布托啡诺与膜制剂结合的竞争分析,测定了一组化合物对在HEK 293细胞系中表达的克隆δ和μ阿片受体的亲和力。所有研究的化合物都表现出高亲和力和选择性,δ阿片受体的表观解离常数在0.6 - 1.7 nM范围内,μ阿片受体的表观解离常数在240 - 1165 nM范围内。接下来,我们试图通过分析μ/δ受体嵌合体的配体亲和力来确定δ受体的哪个结构域对于介导高度选择性结合至关重要。受体结合谱表明,受体/配体相互作用的关键位点位于δ受体的跨膜结构域5(TM5)和TM7之间。将位于TM6细胞外表面的色氨酸284替换为在μ阿片受体等效位置发现的赖氨酸,根据所测试的配体,对亲和力产生了一系列影响。SB 219825和SB 222941的亲和力对该替换特别敏感,分别显示亲和力下降50倍和70倍。在两种功能测定中测试了δ受体选择性激动剂的活性。用选择性配体短暂暴露表达δ阿片受体的HEK 293细胞会诱导MAP激酶磷酸化,尽管非肽类配体的效力低于脑啡肽衍生物DADL(酪氨酸 - D - 丙氨酸 - 甘氨酸 - 苯丙氨酸 - D - 亮氨酸)。同样,用选择性非肽类配体长期暴露表达δ阿片受体的HEK 293细胞(SB 206848除外)会导致受体下调,然而,SB化合物的效力低于DADL。

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