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阿片类药物的构象和静电势表面:与 µ 和 λ 位点结合的关系。

Conformation and electrostatic potential surfaces of opiates: Relationship to µ- and λ-site binding.

机构信息

School of Pharmacy, University of California, San Francisco, California, 94143.

出版信息

Pharm Res. 1986 Aug;3(4):218-24. doi: 10.1023/A:1016338730077.

Abstract

Molecular mechanics energy minimization and electrostatic potential surface calculations have been used to examine a series of opioid compounds that interact with the µ opoid receptor and a recently discovered high-affinity naloxone binding site (the λ site). The compounds studied include members of the morphinan, 4,5-epoxymorphinan, and benzomorphan families. All compounds bind with a high affinity at the µ opiate receptor site, but only the 4,5-epoxymorphinans bind tightly at the λ site. The results suggest that conformational differences in the various families do not satisfactorily explain the observed trends in binding affinity at the λ site. However, electrostatic potential surfaces for a representative subset of these opioids exhibit patterns that allow us to classify members as high-affinity or low-affinity λ-site ligands in good agreement with the experimental results. The procedures used in this work may be useful in defining characteristics that impart selectivity for opiate receptor subtypes such as the µ, δ, and κ receptors.

摘要

已经使用分子力学能量最小化和静电势能面计算来研究一系列与µ阿片受体和最近发现的高亲和力纳洛酮结合位点(λ位点)相互作用的阿片类化合物。所研究的化合物包括吗啡烷、4,5-环氧吗啡烷和苯并吗啡烷家族的成员。所有化合物都与µ阿片受体位点具有高亲和力,但只有 4,5-环氧吗啡烷与 λ 位点紧密结合。结果表明,不同家族之间的构象差异不能令人满意地解释在 λ 位点观察到的结合亲和力趋势。然而,这些阿片类药物的一个代表性子集的静电势能表面显示出的模式使我们能够将成员分类为高亲和力或低亲和力 λ 位点配体,这与实验结果非常吻合。本工作中使用的程序可能有助于定义赋予阿片受体亚型(如µ、δ和κ受体)选择性的特征。

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