INRA, Mathématique, Informatique et Génome UR1077, 78350 Jouy-en-Josas, France.
Protein Eng Des Sel. 2012 Aug;25(8):377-86. doi: 10.1093/protein/gzs037. Epub 2012 Jun 12.
We present a procedure that (i) automates the homology modeling of mammalian olfactory receptors (ORs) based on the six three-dimensional (3D) structures of G protein-coupled receptors (GPCRs) available so far and (ii) performs the docking of odorants on these models, using the concept of colony energy to score the complexes. ORs exhibit low-sequence similarities with other GPCR and current alignment methods often fail to provide a reliable alignment. Here, we use a fold recognition technique to obtain a robust initial alignment. We then apply our procedure to a human OR that we have previously functionally characterized. The analysis of the resulting in silico complexes, supported by receptor mutagenesis and functional assays in a heterologous expression system, suggests that antagonists dock in the upper part of the binding pocket whereas agonists dock in the narrow lower part. We propose that the potency of agonists in activating receptors depends on their ability to establish tight interactions with the floor of the binding pocket. We developed a web site that allows the user to upload a GPCR sequence, choose a ligand in a library and obtain the 3D structure of the free receptor and ligand-receptor complex (http://genome.jouy.inra.fr/GPCRautomodel).
我们提出了一种方法,(i)基于目前可用的六个三维(3D)结构的 G 蛋白偶联受体(GPCR)自动对哺乳动物嗅觉受体(OR)进行同源建模,(ii)在这些模型上对接气味剂,使用菌落能量的概念来对复合物进行评分。OR 与其他 GPCR 的序列相似度较低,目前的对齐方法往往无法提供可靠的对齐。在这里,我们使用折叠识别技术获得了可靠的初始对齐。然后,我们将该程序应用于我们之前功能表征过的人类 OR。对由此产生的计算机模拟复合物的分析,通过在异源表达系统中的受体突变和功能测定得到支持,表明拮抗剂在结合口袋的上部对接,而激动剂在狭窄的下部对接。我们提出,激动剂激活受体的效力取决于它们与结合口袋底部建立紧密相互作用的能力。我们开发了一个网站,允许用户上传 GPCR 序列,在库中选择配体,并获得游离受体和配体-受体复合物的 3D 结构(http://genome.jouy.inra.fr/GPCRautomodel)。