Hallmen Christian, Wiese Michael
Pharmaceutical Institute, University of Bonn, Bonn, Germany.
J Comput Aided Mol Des. 2006 Oct-Nov;20(10-11):673-84. doi: 10.1007/s10822-006-9088-5. Epub 2006 Nov 24.
The adenosine A(3) receptor together with rhodopsin belongs to Class A of the G-protein coupled receptors. As the crystal structure of bovine rhodopsin represents the dark (inactive) state of the receptor, the details of GPCR activation are still unknown. In this molecular dynamics study we investigate how the homology model of the human adenosine A(3) receptor responds to ligand exposure. To this end we placed the homology model in a POPC membrane model. After equilibrating for 13 ns an agonist (Cl-IB-MECA) and an inverse agonist (PSB-10) were placed inside the putative binding pocket. In the following 10 ns molecular dynamics simulation we observed a different behaviour of the side-chain torsions of Trp243(6.48), depending on the presence or absence of the agonist or inverse agonist. This conformational change of Trp243 correlates with the assumed influence of ligands on receptor activation. Other predicted conformational changes of the receptor could not be observed yet. So Trp243 may represent the first switch in receptor activation.
腺苷A(3)受体与视紫红质同属于G蛋白偶联受体A类。由于牛视紫红质的晶体结构代表了该受体的黑暗(无活性)状态,GPCR激活的细节仍不清楚。在这项分子动力学研究中,我们研究了人腺苷A(3)受体的同源模型对配体暴露的反应。为此,我们将同源模型置于POPC膜模型中。在平衡13纳秒后,将一种激动剂(Cl-IB-MECA)和一种反向激动剂(PSB-10)置于假定的结合口袋内。在接下来的10纳秒分子动力学模拟中,我们观察到Trp243(6.48)侧链扭转的不同行为,这取决于激动剂或反向激动剂的存在与否。Trp243的这种构象变化与配体对受体激活的假定影响相关。尚未观察到受体的其他预测构象变化。因此,Trp243可能代表受体激活中的第一个开关。