Boeckler Frank, Lanig Harald, Gmeiner Peter
Department of Medicinal Chemistry, Emil Fischer Center, Friedrich-Alexander University, Schuhstrasse 19, D-91052 Erlangen, Germany.
J Med Chem. 2005 Feb 10;48(3):694-709. doi: 10.1021/jm049612a.
Focusing on the similarity and divergence of GPCR subtypes and their ligand interactions, we generated dopamine D2, D3, and D4 receptor models based on the rhodopsin crystal structure and refined these with an extensive MM/MD protocol. After validation by diagnostic experimental data, subtype-specific relative positions of TM1, 2, 6, and 7 and bending angles of TM7 were found. To sample the conformational space of the complex, we performed simulated-annealing runs of the receptor protein with the sub-nanomolar antagonist spiperone. Docking a representative set of ligands, we were able to identify one superior model for each subtype when excellent correlations between predicted energies of binding and experimental affinities (r2 = 0.72 for D2, 0.91 for D3 and 0.77 for D4) could be observed. Further analysis revealed general ligand interactions with ASP3.32 and aromatic residues in TM6/7 and individual key interactions with TM1 and TM2 residues of the D3 and D4 receptor models, respectively.
着眼于GPCR亚型及其配体相互作用的异同,我们基于视紫红质晶体结构构建了多巴胺D2、D3和D4受体模型,并通过广泛的MM/MD协议对其进行了优化。经诊断实验数据验证后,发现了跨膜螺旋(TM)1、2、6和7的亚型特异性相对位置以及TM7的弯曲角度。为了对复合物的构象空间进行采样,我们用亚纳摩尔拮抗剂螺哌隆对受体蛋白进行了模拟退火运行。对接一组代表性的配体,当观察到预测结合能与实验亲和力之间具有良好的相关性(D2的r2 = 0.72,D3的r2 = 0.91,D4的r2 = 0.77)时,我们能够为每个亚型确定一个最优模型。进一步分析揭示了与TM6/7中的ASP3.32和芳香族残基的一般配体相互作用,以及分别与D3和D4受体模型的TM1和TM2残基的个别关键相互作用。