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具有δ阿片受体选择性的[D-青霉胺2,D-青霉胺5]脑啡肽的环取代及其他构象受限的酪氨酸类似物。

Ring substituted and other conformationally constrained tyrosine analogues of [D-Pen2,D-Pen5]enkephalin with delta opioid receptor selectivity.

作者信息

Toth G, Russell K C, Landis G, Kramer T H, Fang L, Knapp R, Davis P, Burks T F, Yamamura H I, Hruby V J

机构信息

Department of Chemistry, University of Arizona, Tucson 85721.

出版信息

J Med Chem. 1992 Jun 26;35(13):2384-91. doi: 10.1021/jm00091a006.

Abstract

The conformationally restricted, cyclic disulfide-containing delta opioid receptor selective enkephalin analogue [D-Pen2,D-Pen5] enkephalin (DPDPE) was modified by 2' (CH3) and 3' (I, OCH3, NO2, NH2) ring substitutions and by beta-methyl conformationally constrained beta-methyltyrosine derivatives in the 1 position. The potency and selectivity of these analogues were evaluated by bioassay in the mouse vas deference (MVD, delta receptor assay) and guinea pig ileum (GPI, mu receptor assay) assays and by radioreceptor binding assays in the rat brain using [3H]CTOP (mu ligand) and [3H][p-ClPhe4]DPDPE (delta ligand). The analogues showed highly variable potencies in the binding assays and in the bioassays. Aromatic ring substituents with positive Hammett constants had decreased potency, while substituents with negative Hammett constraints has increased potency for the opioid receptor. The most potent and most selective compound based on the binding was [2'-MeTyr1]DPDPE (IC50 = 0.89 nM and selectivity ratio 1310 in the binding assays). The 6-hydroxy-2-aminotetralin-2-carboxylic acid-containing analogue, [Hat1]DPDPE, also was highly potent and selective in both assays, demonstrating that significant modifications of tyrosine in enkephalins are possible with maintenance of high potency and delta opioid receptor selectivity. Of the beta-methyl-substituted Tyr1 analogues, [(2S,3R)-beta-MeTyr1]DPDPE was the most potent and the delta receptor selective. The results with substitution of beta-MeTyr or Hat instead of Tyr also demonstrate that topographical modification in a conformationally restricted ligand can significantly modulate both potency and receptor selectivity of peptide ligands that have multiple sites of biological activity.

摘要

构象受限的含环状二硫键的δ阿片受体选择性脑啡肽类似物[D-青霉胺2,D-青霉胺5]脑啡肽(DPDPE)通过2'(CH3)和3'(I、OCH3、NO2、NH2)环取代以及1位的β-甲基构象受限的β-甲基酪氨酸衍生物进行修饰。通过小鼠输精管(MVD,δ受体测定)和豚鼠回肠(GPI,μ受体测定)生物测定以及使用[3H]CTOP(μ配体)和[3H][对氯苯丙氨酸4]DPDPE(δ配体)在大鼠脑中进行放射性受体结合测定来评估这些类似物的效力和选择性。这些类似物在结合测定和生物测定中显示出高度可变的效力。具有正哈米特常数的芳环取代基降低了效力,而具有负哈米特常数的取代基则增加了对阿片受体的效力。基于结合的最有效和最具选择性的化合物是[2'-甲基酪氨酸1]DPDPE(在结合测定中IC50 = 0.89 nM,选择性比为1310)。含6-羟基-2-氨基四氢萘-2-羧酸的类似物[Hat1]DPDPE在两种测定中也具有高效力和选择性,表明在维持高效力和δ阿片受体选择性的情况下,脑啡肽中酪氨酸的显著修饰是可能的。在β-甲基取代的Tyr1类似物中,[(2S,3R)-β-甲基酪氨酸1]DPDPE是最有效且对δ受体具有选择性的。用β-甲基酪氨酸或Hat取代Tyr的结果还表明,构象受限配体中的拓扑修饰可以显著调节具有多个生物活性位点的肽配体的效力和受体选择性。

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