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用分子模构法建立κ阿片受体激动剂的药效基团
引用本文:刘东祥 蒋华良. 用分子模构法建立κ阿片受体激动剂的药效基团[J]. 中国药理学报, 1998, 19(5): 445-450
作者姓名:刘东祥 蒋华良
摘    要:目的:建立非肽类κ阿片受体激动剂的药效基团。方法:从MDL MDDR数据库中选出五个高活性非肽类κ阿片受体激动剂,以四氢吡咯环N原子和乙酰胺基团为叠加点,用分子模构法建立非肽类κ阿片受体激动剂的药效基团。结果:四氢吡咯环、乙酰胺的羰基和与惭酰胺相连的疏水基团为非肽类κ阿片受体激动剂共同结构特征。推测受体Asp138与甲氢吡咯环的N原子构成氢键,Ser187可能与激动剂的乙酰胺羰基以氢键形式相作用。

关 键 词:分子力学 κ阿片 受体激动剂 药效基团

Establishment of kappa opioid receptor agonists pharmacophore with molecular modeling method.
D X Liu,Y Tang,H L Jiang,K X Chen,R Y Ji. Establishment of kappa opioid receptor agonists pharmacophore with molecular modeling method.[J]. Acta Pharmacologica Sinica, 1998, 19(5): 445-450
Authors:D X Liu  Y Tang  H L Jiang  K X Chen  R Y Ji
Affiliation:Shanghai Institute of Materia Medica, Chinese Academy of Sciences, China.
Abstract:AIM: To build up nonpeptide kappa-opioid receptor agonists pharmacophore. METHODS: Five structurally diverse, highly active nonpeptide kappa-opioid agonists were retrieved from MDL MDDR database. Molecular mechanics method were used to seek out 50 lower energy conformations for each compound. Taking nitrogen atom of pyrrolidine and acyl acetamide as overlay points, 5 agonists were superimposed to each other with their most favorite conformation. From the overlay map, the structure specificity of nonpeptide kappa-opioid receptor agonists were elucidated. RESULTS: According to this pharmacophore, the pyrrolidine ring, the carbonyl group of acyl acetamide, and the hydrophobic group attached to acyl acetamide were suggested to be the structure-specific moieties of kappa-opioid agonists. Moreover, by comparing kappa 1-opioid receptor sequence of mouse with other G-protein-coupled receptors, we determined those conserve residues existing on transmembrane regions which might interact with the suggested groups. The carboxyl of Asp138 might interact with N atom of pyrrolidine by forming a hydrogen bond. The hydroxyl of Ser187 and the carbonyl group of kappa-opioid agonists might form another hydrogen bond, which was critical for its kappa selective affinity. The hydrophobic group attached to acyl acetamide might have hydrophobic interaction with aromatic residues of kappa-opioid receptors. CONCLUSION: These kappa agonists pharmacophore were helpful to select specific positions in the lead compounds to be occupied by hydrophobic moieties to limit their ability to across the blood-brain barrier.
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