Martín-Martínez Mercedes, Marty Anne, Jourdan Maud, Escrieut Chantal, Archer Elodie, González-Muñiz Rosario, García-López M Teresa, Maigret Bernard, Herranz Rosario, Fourmy Daniel
Instituto de Química Médica (CSIC), Juan de la Cierva 3, E-28006 Madrid, Spain.
J Med Chem. 2005 Jul 28;48(15):4842-50. doi: 10.1021/jm0501127.
A rational combination of site-directed mutagenesis studies, structure-activity relationships, and dynamic-based docking of pyridopyrimidine-derived CCK1R antagonists into a refined three-dimensional model of the CCK1R allowed us to identify the receptor residues and the ligand functional groups implicated in the molecular recognition process. Our results provided unambiguous evidence that the binding site of these antagonists is overlapping that of the C-terminal tetrapeptide of CCK. In particular, Asn333 and Arg336 residues of the CCK1R are essential for high-affinity binding of these ligands. Moreover, the 2-aryl group in the pyridopyrimidine derivatives shares the same binding pocket as the C-terminal Phe side chain of CCK. Our [pyridopyrimidine.CCK1R] complex model is consistent with previous suggestions concerning the molecular basis that governs functional activity and provides useful considerations about the high CCK1 versus CCK2 selectivity of our derivatives and could contribute to fine-tune the rational design of new molecules with optimized properties.
将定点诱变研究、构效关系以及基于动力学的嘧啶并吡啶衍生的CCK1R拮抗剂对接至CCK1R的精确三维模型进行合理组合,使我们能够确定参与分子识别过程的受体残基和配体官能团。我们的结果提供了明确的证据,表明这些拮抗剂的结合位点与CCK C末端四肽的结合位点重叠。特别是,CCK1R的Asn333和Arg336残基对于这些配体的高亲和力结合至关重要。此外,嘧啶并吡啶衍生物中的2-芳基与CCK C末端苯丙氨酸侧链共享相同的结合口袋。我们的[嘧啶并吡啶.CCK1R]复合物模型与先前关于控制功能活性的分子基础的建议一致,并为我们的衍生物对CCK1与CCK2的高选择性提供了有用的考虑因素,且有助于微调具有优化性质的新分子的合理设计。