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吗啡与脑啡肽受体在体外的变构偶联

Allosteric coupling between morphine and enkephalin receptors in vitro.

作者信息

Rothman R B, Westfall T C

出版信息

Mol Pharmacol. 1982 May;21(3):548-57.

PMID:6287193
Abstract

In a recent paper from our laboratory [Mol. Pharmacol 21:538-547 (1982)] evidence was presented which suggested that [3H]leucine enkephalin labels a single class of binding sites (the enkephalin receptor) and that morphine allosterically induces a masking of enkephalin receptors as a consequence of binding to a receptor (the morphine receptor) not labeled by the 3H-peptide. Evidence is presented in this paper that [3H]etorphine can be used to label selectively the morphine receptor and that the inhibitory dissociation constants (KI) of morphine, etorphine, and human beta-endorphin for the [3H]etorphine binding site closely approximate the concentration of these drugs which produce a half-maximal decrease in the number of enkephalin receptors. Furthermore, an examination of the interaction of leucine enkephalin and methionine enkephalin with the morphine receptor has demonstrated that the pentapeptides are not competitive inhibitors of [3H] etorphine binding, and that they have much lower affinities for the morphine receptor than previously thought. On the basis of these data, a working hypothesis has been formulated which postulates that distinct morphine and enkephalin receptors coexist in an opioid-receptor complex.

摘要

在我们实验室最近发表的一篇论文中[《分子药理学》21:538 - 547(1982)],有证据表明,[³H]亮氨酸脑啡肽标记了一类单一的结合位点(脑啡肽受体),并且吗啡由于与一个未被³H肽标记的受体(吗啡受体)结合,从而变构诱导脑啡肽受体被掩盖。本文提供的证据表明,[³H]埃托啡可用于选择性标记吗啡受体,并且吗啡、埃托啡和人β - 内啡肽对[³H]埃托啡结合位点的抑制解离常数(KI)与这些药物在使脑啡肽受体数量减少一半时的浓度非常接近。此外,对亮氨酸脑啡肽和甲硫氨酸脑啡肽与吗啡受体相互作用的研究表明,五肽不是[³H]埃托啡结合的竞争性抑制剂,并且它们对吗啡受体的亲和力比之前认为的要低得多。基于这些数据,已形成一个工作假说,该假说假定在阿片受体复合物中存在不同的吗啡受体和脑啡肽受体。

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