Dong Maoqing, Lam Polo C-H, Gao Fan, Hosohata Keiko, Pinon Delia I, Sexton Patrick M, Abagyan Ruben, Miller Laurence J
Department of Molecular Pharmacology and Experimental Therapeutics, Mayo Clinic Scottsdale, Scottsdale, Arizona, USA.
Mol Pharmacol. 2007 Aug;72(2):280-90. doi: 10.1124/mol.107.035402. Epub 2007 May 2.
The structurally unique amino-terminal domain of class II G protein-coupled receptors is critically important for ligand binding and receptor activation. Understanding the precise role it plays requires detailed insights into the molecular basis of its ligand interactions and the conformation of the ligand-receptor complex. In this work, we used two high-affinity, full-agonist, secretin-like photolabile probes having sites for covalent attachment in positions 21 and 23 and used sequential proteolysis and sequencing of the labeled region of the receptor to identify two new spatial approximation constraints. The position 21 probe labeled receptor residue Arg(15), whereas the position 23 probe labeled receptor residue Arg(21). A homology model of the amino-terminal domain of the secretin receptor was developed using the NMR structure of the analogous domain of the corticotropin-releasing factor receptor. This was attached to a homology model of the secretin receptor transmembrane bundle, with the two domains oriented relative to each other based on continuity of the peptide backbone and by imposing a distance restraint recently identified between the amino-terminal WDN sequence and the region of the helical bundle above transmembrane segment six. Secretin was docked to this model using seven sets of spatial approximation constraints identified in previous photoaffinity labeling studies. This model was found to fully accommodate all existing constraints, as well as the two new approximations identified in this work.
II类G蛋白偶联受体结构独特的氨基末端结构域对于配体结合和受体激活至关重要。要了解其确切作用,需要深入洞察其配体相互作用的分子基础以及配体-受体复合物的构象。在这项工作中,我们使用了两种高亲和力、完全激动剂、促胰液素样的光不稳定探针,它们在第21位和第23位具有共价连接位点,并对受体的标记区域进行连续的蛋白酶解和测序,以确定两个新的空间近似限制。第21位探针标记受体残基Arg(15),而第23位探针标记受体残基Arg(21)。利用促肾上腺皮质激素释放因子受体类似结构域的核磁共振结构,构建了促胰液素受体氨基末端结构域的同源模型。将其与促胰液素受体跨膜束的同源模型相连,基于肽主链的连续性以及通过施加最近在氨基末端WDN序列与跨膜片段6上方螺旋束区域之间确定的距离限制,使这两个结构域相互定向。利用先前光亲和标记研究中确定的七组空间近似限制,将促胰液素对接至该模型。发现该模型完全符合所有现有限制以及本工作中确定的两个新的近似值。