Caliman Alisha D, Swift Sara E, Wang Yi, Miao Yinglong, McCammon J Andrew
Department of Pharmacology, University of California at San Diego, La Jolla, California, 92093.
Howard Hughes Medical Institute, University of California at San Diego, La Jolla, California, 92093.
Protein Sci. 2015 Jun;24(6):1004-12. doi: 10.1002/pro.2681. Epub 2015 Apr 10.
The activation/deactivation processes for G-protein coupled receptors (GPCRs) have been computationally studied for several different classes, including rhodopsin, the β2 adrenergic receptor, and the M2 muscarinic receptor. Despite determined cocrystal structures of the adenosine A2A receptor (A2A AR) in complex with antagonists, agonists and an antibody, the deactivation process of this GPCR is not completely understood. In this study, we investigate the convergence of two apo simulations, one starting with an agonist-bound conformation (PDB: 3QAK)(14) and the other starting with an antagonist-bound conformation (PDB: 3EML)(11) . Despite the two simulations not completely converging, we were able to identify distinct intermediate steps of the deactivation process characterized by the movement of Y288(7.53) in the NPxxY motif. We find that Y288(7.53) contributes to the process by forming hydrogen bonds to residues in transmembrane helices 2 and 7 and losing these interactions upon full deactivation. Y197(5.58) also plays a role in the process by forming a hydrogen bond only once the side chain moves from the lipid interface to the middle of the helical bundle.
针对几类不同的G蛋白偶联受体(GPCR),包括视紫红质、β2肾上腺素能受体和M2毒蕈碱受体,已经开展了G蛋白偶联受体激活/失活过程的计算研究。尽管已确定腺苷A2A受体(A2A AR)与拮抗剂、激动剂和抗体复合物的共晶体结构,但该GPCR的失活过程仍未完全明确。在本研究中,我们研究了两个无配体模拟的收敛情况,一个从与激动剂结合的构象(PDB:3QAK)(14)开始,另一个从与拮抗剂结合的构象(PDB:3EML)(11)开始。尽管这两个模拟未完全收敛,但我们能够识别出失活过程中以NPxxY基序中Y288(7.53)的移动为特征的不同中间步骤。我们发现,Y288(7.53)通过与跨膜螺旋2和7中的残基形成氢键并在完全失活时失去这些相互作用,从而对该过程产生影响。Y197(5.58)也在该过程中发挥作用,其侧链仅在从脂质界面移动到螺旋束中间时才形成氢键。