Zaveri Nurulain, Jiang Faming, Olsen Cris, Polgar Willma, Toll Lawrence
Biosciences Division, SRI International, Menlo Park, CA 94025, USA.
AAPS J. 2005 Oct 5;7(2):E345-52. doi: 10.1208/aapsj070234.
The recently discovered fourth member of the opioid receptor family, the nociceptin receptor (NOP) and its endogenous ligand, the heptadecapeptide nociceptin, are involved in several central nervous system pathways, such as nociception, reward, tolerance, and feeding. The discovery of small-molecule ligands for NOP is being actively pursued for several therapeutic applications. This review presents a brief overview of the several recently reported NOP ligands, classified as NOP agonists and antagonists, with an emphasis on the analysis of the structural features that may be important for modulating the agonist/antagonist profile (intrinsic activity) of these ligands. Structure-activity relationships in our own series of dihydroindolinone-based NOP ligands and those of the various reported ligands indicate that the lipophilic substituent on the common basic nitrogen present in all NOP ligands plays a role in determining the agonist/antagonist profile of the NOP ligand. This analysis provides a basis for the rational drug design of NOP ligands of desired intrinsic activity and provides a framework for developing pharmacophore models for high affinity binding and intrinsic activity at the NOP receptor. Since NOP agonists and antagonists both have therapeutic value, rational approaches for obtaining both within a high-affinity binding class of compounds are very useful for designing potent and selective NOP ligands with the desired profile of intrinsic efficacy.
阿片受体家族最近发现的第四个成员——孤啡肽受体(NOP)及其内源性配体十七肽孤啡肽,参与了多种中枢神经系统途径,如痛觉感受、奖赏、耐受性和进食。目前正在积极寻找用于多种治疗应用的NOP小分子配体。本综述简要概述了最近报道的几种NOP配体,分为NOP激动剂和拮抗剂,并着重分析了可能对调节这些配体的激动剂/拮抗剂特性(内在活性)很重要的结构特征。我们自己的一系列基于二氢吲哚酮的NOP配体以及各种已报道配体的构效关系表明,所有NOP配体中常见碱性氮上的亲脂性取代基在决定NOP配体的激动剂/拮抗剂特性方面发挥作用。该分析为设计具有所需内在活性的NOP配体的合理药物设计提供了基础,并为开发用于在NOP受体上进行高亲和力结合和内在活性的药效团模型提供了框架。由于NOP激动剂和拮抗剂都具有治疗价值,在高亲和力结合类化合物中同时获得两者的合理方法对于设计具有所需内在效能特征的强效和选择性NOP配体非常有用。