Bröer Britta M, Gurrath Marion, Höltje Hans-Dieter
Institute for Pharmaceutical Chemistry, Heinrich-Heine-University Düsseldorf, Universitätsstrasse 1, D-40225 Düsseldorf, Germany.
J Comput Aided Mol Des. 2003 Nov;17(11):739-54. doi: 10.1023/b:jcam.0000017491.97244.69.
The ORLI (opioid receptor like 1)- receptor is a member of the family of rhodopsin-like G protein-coupled receptors (GPCR) and represents an interesting new therapeutical target since it is involved in a variety of biomedical important processes, such as anxiety, nociception, feeding, and memory. In order to shed light on the molecular basis of the interactions of the GPCR with its ligands, the receptor protein and a dataset of specific agonists were examined using molecular modelling methods. For that purpose, the conformational space of a very potent non-peptide ORL1-receptor agonist (Ro 64-6198) with a small number of rotatable bonds was analysed in order to derive a pharmacophoric arrangement. The conformational analyses yielded a conformation that served as template for the superposition of a set of related analogues. Structural superposition was achieved by employing the program FlexS. Using the experimental binding data and the superposition of the ligands, a 3D-QSAR analysis applying the GRID/GOLPE method was carried out. After the ligand-based modelling approach, a 3D model of the ORL1-receptor has been constructed using homology modelling methods based on the crystal structure of bovine rhodopsin. A representative structure of the model taken from molecular dynamics simulations was used for a manual docking procedure. Asp-130 and Thr-305 within the ORL1-receptor model served as important hydrophilic interaction partners. Furthermore, a hydrophobic cavity was identified stabilizing the agonists within their binding site. The manual docking results were supported using FlexX, which identified the same protein-ligand interaction points.
阿片样物质受体样1(ORLI)受体是视紫红质样G蛋白偶联受体(GPCR)家族的成员,由于其参与多种重要的生物医学过程,如焦虑、伤害感受、进食和记忆,因此是一个有趣的新治疗靶点。为了阐明GPCR与其配体相互作用的分子基础,使用分子建模方法研究了受体蛋白和一组特异性激动剂。为此,分析了一种具有少量可旋转键的强效非肽ORL1受体激动剂(Ro 64-6198)的构象空间,以得出药效团排列。构象分析产生了一种构象,作为一组相关类似物叠加的模板。通过使用FlexS程序实现结构叠加。利用实验结合数据和配体叠加,应用GRID/GOLPE方法进行了三维定量构效关系(3D-QSAR)分析。在基于配体的建模方法之后,基于牛视紫红质的晶体结构,使用同源建模方法构建了ORL1受体的三维模型。从分子动力学模拟中获取的模型代表性结构用于手动对接程序。ORL1受体模型中的天冬氨酸-130和苏氨酸-305作为重要的亲水相互作用伙伴。此外,还确定了一个疏水腔,以稳定激动剂在其结合位点内。使用FlexX支持手动对接结果,FlexX确定了相同的蛋白质-配体相互作用点。