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环脑啡肽类似物的体外合成及药理学特性:构象限制对阿片受体选择性的影响

Synthesis and pharmacological characterization in vitro of cyclic enkephalin analogues: effect of conformational constraints on opiate receptor selectivity.

作者信息

DiMaio J, Nguyen T M, Lemieux C, Schiller P W

出版信息

J Med Chem. 1982 Dec;25(12):1432-8. doi: 10.1021/jm00354a008.

Abstract

Using a combination of solid-phase and solution methods, we synthesized a series of cyclic [Leu5]enkephalin analogues by substitution of D-alpha, omega-diamino acids in position 2 of the enkephalin sequence and cyclization of the omega-amino group to the C-terminal carboxy group of leucine. Cyclic analogues containing D-alpha, beta-diaminopropionic acid (1), D-alpha, gamma-diaminobutyric acid (2), D-ornithine (3), or D-lysine (4) in position 2 and the [D-Leu5] and [des-Leu5] analogues of 4 (5 and 6) showed, in general, high potency in the guinea pig ileum (GPI) assay and low potency in the mouse vas deferens (MVD) assay. IC50 (MVD)/IC50 (GPI) ratios ranging from 3.1 to 29.4 were obtained, indicating the preference of the cyclic analogues for mu receptors over delta receptors. With two exceptions, preferential affinity for mu receptors is reflected in the Ki ratios determined in parallel binding assays using [3H]naloxone and [3H] [D-Ala2, D-Leu5]enkephalin as mu and delta receptor selective radioligands, respectively. Comparison of the pharmacological profiles of the cyclic analogues 1-4 with those of their corresponding open-chain analogues, [D-Ala2, Leu5]enkephalinamide (1a), [D-Abu2, Leu5]enkephalinamide (2a), [D-Nva2, Leu5]enkephalinamide (3a), and [D-Nle2, Leu5]enkephalinamide (4a), revealed that the pronounced mu character of compounds 1-4 is a direct consequence of the conformational constraints introduced by cyclization. This finding is in agreement with the concept of different conformational requirements of mu- and delta-opiate receptors and raises the possibility of manipulating opiate receptor selectivity by varying the type and degree of conformational restriction.

摘要

我们采用固相和溶液相结合的方法,通过在脑啡肽序列的2位取代D-α,ω-二氨基酸,并将ω-氨基环化至亮氨酸的C末端羧基,合成了一系列环状[Leu5]脑啡肽类似物。在2位含有D-α,β-二氨基丙酸(1)、D-α,γ-二氨基丁酸(2)、D-鸟氨酸(3)或D-赖氨酸(4)以及4的[D-Leu5]和[去-Leu5]类似物(5和6)的环状类似物,总体上在豚鼠回肠(GPI)试验中显示出高效力,而在小鼠输精管(MVD)试验中显示出低效力。获得的IC50(MVD)/IC50(GPI)比值范围为3.1至29.4,表明环状类似物对μ受体的偏好高于δ受体。除两个例外情况外,对μ受体的优先亲和力反映在使用[3H]纳洛酮和[3H][D-Ala2,D-Leu5]脑啡肽分别作为μ和δ受体选择性放射性配体的平行结合试验中测定的Ki比值上。将环状类似物1-4与其相应的开链类似物[D-Ala2,Leu5]脑啡肽酰胺(1a)、[D-Abu2,Leu5]脑啡肽酰胺(2a)、[D-Nva2,Leu5]脑啡肽酰胺(3a)和[D-Nle2,Leu5]脑啡肽酰胺(4a)的药理学特征进行比较,发现化合物1-4明显的μ特性是环化引入的构象限制的直接结果。这一发现与μ和δ阿片受体不同构象要求的概念一致,并提出了通过改变构象限制的类型和程度来操纵阿片受体选择性的可能性。

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