McFadyen I J, Metzger T G, Paterlini M G, Ferguson D M
Department of Medicinal Chemistry, University of Minnesota, Minneapolis, MN 55414, USA.
Protein Eng. 2001 Dec;14(12):953-60. doi: 10.1093/protein/14.12.953.
Previous studies have probed the structural basis of ligand selectivity in the mu, delta and kappa opioid receptors through the application of molecular modeling techniques in concert with the 'message-address' concept. Here, this approach was used in an attempt to rationalize the unique pharmacological profile of a recently cloned novel opioid receptor, ZFOR1 (ZebraFish Opioid Receptor 1). Specifically, a model of the transmembrane domains of ZFOR1 was constructed and used to explore the binding modes of various prototypical opioid ligands. The results show that the 'message' portion of the binding pocket of ZFOR1 is highly conserved; hence, the binding modes of non-selective opioid ligands are well preserved. In contrast, a small number of variant residues at the extracellular end of the binding pocket, particularly Lys288 (VI:26) and Trp304 (VII:03), are shown to create adverse steric interactions with all delta and kappa selective ligands examined, thereby disrupting their binding modes. These results are consistent with, and serve as an explanation for, the observed pharmacology of this receptor, lending support to both the validity of the 'message-address' concept itself and to the use of molecular modeling approaches in its application.
先前的研究通过结合分子建模技术与“信息-位点”概念,探究了μ、δ和κ阿片受体中配体选择性的结构基础。在此,采用这种方法试图阐明最近克隆的新型阿片受体ZFOR1(斑马鱼阿片受体1)独特的药理学特征。具体而言,构建了ZFOR1跨膜结构域的模型,并用于探索各种典型阿片配体的结合模式。结果表明,ZFOR1结合口袋的“信息”部分高度保守;因此,非选择性阿片配体的结合模式得以很好地保留。相比之下,结合口袋细胞外端的少数变异残基,特别是赖氨酸288(VI:26)和色氨酸304(VII:03),与所有检测的δ和κ选择性配体产生不利的空间相互作用,从而破坏它们的结合模式。这些结果与该受体观察到的药理学一致,并为之提供了解释,支持了“信息-位点”概念本身的有效性以及分子建模方法在其应用中的使用。