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苯并吗啡烷位点是假定的ε受体的配体识别位点。

Benzomorphan sites are ligand recognition sites of putative epsilon-receptors.

作者信息

Chang K J, Blanchard S G, Cuatrecasas P

出版信息

Mol Pharmacol. 1984 Nov;26(3):484-8.

PMID:6149459
Abstract

The binding characteristics of benzomorphan sites of rat brain membranes are compared with those of kappa-sites of human placenta and guinea pig brain membranes. Enkephalins and the stable analog [D-Ala2,D-Leu5]enkephalin, which are virtually inactive at kappa-sites, possess moderate binding affinity at benzomorphan sites. In contrast, a dynorphin analog, PL017-dynorphin A(6-17), binds well to kappa-sites but poorly to benzomorphan sites. Among all opioid peptides tested, beta h-endorphin, which is essentially inactive at the kappa-receptor sites, is the most potent ligand at benzomorphan sites. The potencies of beta h-endorphin and its fragments at epsilon-receptors of the rat vas deferens correlate well with their binding affinities of benzomorphan sites but not of mu- and delta-sites. These data, as well as the data which show the distinct distribution of benzomorphan sites in rat brain as compared with the distribution of mu- and delta-sites of rat brain and of kappa-sites of guinea pig brain, suggest that benzomorphan sites of rat brain are the ligand-binding sites of epsilon-receptors.

摘要

将大鼠脑膜中苯并吗啡烷位点的结合特性与人类胎盘和豚鼠脑膜中κ位点的结合特性进行了比较。脑啡肽和稳定类似物[D - Ala2,D - Leu5]脑啡肽在κ位点几乎没有活性,但在苯并吗啡烷位点具有中等结合亲和力。相比之下,强啡肽类似物PL017 - 强啡肽A(6 - 17)与κ位点结合良好,但与苯并吗啡烷位点结合较差。在所有测试的阿片肽中,βh - 内啡肽在κ受体位点基本没有活性,但在苯并吗啡烷位点是最有效的配体。βh - 内啡肽及其片段对大鼠输精管ε受体的效力与其在苯并吗啡烷位点的结合亲和力密切相关,而与μ和δ位点的结合亲和力无关。这些数据,以及显示大鼠脑内苯并吗啡烷位点与大鼠脑内μ和δ位点以及豚鼠脑内κ位点分布不同的数据,表明大鼠脑内的苯并吗啡烷位点是ε受体的配体结合位点。

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