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δ-阿片受体高亲和力和选择性非肽激动剂的从头设计、合成及生物活性

De novo design, synthesis, and biological activities of high-affinity and selective non-peptide agonists of the delta-opioid receptor.

作者信息

Liao S, Alfaro-Lopez J, Shenderovich M D, Hosohata K, Lin J, Li X, Stropova D, Davis P, Jernigan K A, Porreca F, Yamamura H I, Hruby V J

机构信息

Departments of Chemistry and Pharmacology, The University of Arizona, Tucson, Arizona 85721, USA.

出版信息

J Med Chem. 1998 Nov 19;41(24):4767-76. doi: 10.1021/jm980374r.

Abstract

On the basis of the structure-activity relationships of delta-opioid-selective peptide ligands and on a model of the proposed bioactive conformation for a potent and selective, conformationally constrained delta-opioid peptide ligand [(2S, 3R)-TMT1]DPDPE, a series of small organic peptide mimetic compounds targeted for the delta-opioid receptor have been designed, synthesized, and evaluated in radiolabeled ligand binding assays and in vitro bioassays. The new non-peptide ligands use piperazine as a template to present the most important pharmacophore groups, including phenol and phenyl groups and a hydrophobic moiety. This hydrophobic group was designed to mimic the hydrophobic character of the D-Pen residues in DPDPE, which has been found to be extremely important for increasing the binding affinity and selectivity of these non-peptide ligands for the delta-opioid receptor over the mu-opioid receptor. Compound 6f (SL-3111) showed 8 nM binding affinity and over 2000-fold selectivity for the delta-opioid receptor over the mu-opioid receptor. Both enantiomers of SL-3111 were separated, and the (-)-isomer was shown to be the compound with the highest affinity for the delta-opioid receptor found in our study (IC50 = 4.1 nM), with a selectivity very similar to that observed for the racemic compound. The phenol hydroxyl group of SL-3111 turned out to be essential to maintain high affinity for the delta-opioid receptor, which also was observed in the case of the delta-opioid-selective peptide ligand DPDPE. Binding studies of SL-3111 and [p-ClPhe4]DPDPE on the cloned wild-type and mutated human delta-opioid receptors suggested that the new non-peptide ligand has a binding profile similar to that of DPDPE but different from that of (+)-4-[((alphaR)-alpha(2S,5R)-4-allyl-2, 5-dimethyl-1-piperazinyl)-3-methoxybenzyl]-N,N-diethylbenzamide (SNC-80), another delta-opioid-selective non-peptide ligand.

摘要

基于δ-阿片样物质选择性肽配体的构效关系以及一种强效且选择性的、构象受限的δ-阿片样物质肽配体[(2S, 3R)-TMT1]DPDPE的拟生物活性构象模型,设计、合成了一系列靶向δ-阿片样物质受体的小有机肽模拟化合物,并在放射性标记配体结合试验和体外生物试验中进行了评估。新的非肽配体以哌嗪为模板呈现最重要的药效基团,包括酚基和苯基以及一个疏水部分。该疏水基团旨在模拟DPDPE中D-青霉胺残基的疏水特性,已发现这对于提高这些非肽配体对δ-阿片样物质受体相对于μ-阿片样物质受体的结合亲和力和选择性极为重要。化合物6f(SL-3111)对δ-阿片样物质受体的结合亲和力为8 nM,对μ-阿片样物质受体的选择性超过2000倍。SL-3111的两种对映体被分离出来,(-)-异构体被证明是我们研究中对δ-阿片样物质受体亲和力最高的化合物(IC50 = 4.1 nM),其选择性与外消旋化合物非常相似。结果表明,SL-3111的酚羟基对于维持对δ-阿片样物质受体的高亲和力至关重要,在δ-阿片样物质选择性肽配体DPDPE的情况中也观察到了这一点。SL-3111和[p-ClPhe4]DPDPE在克隆的野生型和突变型人δ-阿片样物质受体上的结合研究表明,新的非肽配体具有与DPDPE相似但与另一种δ-阿片样物质选择性非肽配体(+)-4-[((αR)-α(2S,5R)-4-烯丙基-2, 5-二甲基-1-哌嗪基)-3-甲氧基苄基]-N,N-二乙基苯甲酰胺(SNC-80)不同的结合模式。

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