Dore Andrew S, Bortolato Andrea, Hollenstein Kaspar, Cheng Robert K Y, Read Randy J, Marshall Fiona H
Heptares Therapeutics Ltd, BioPark, Broadwater Road, Welwyn Garden City, Herts, AL7 3AX. United Kingdom.
Merck Research Laboratories, West Point, PA 19486. United States.
Curr Mol Pharmacol. 2017;10(4):334-344. doi: 10.2174/1874467210666170110114727.
The structural analysis of class B G protein-coupled receptors (GPCR), cell surface proteins responding to peptide hormones, has until recently been restricted to the extracellular domain (ECD). Corticotropin-releasing factor receptor type 1 (CRF1R) is a class B receptor mediating stress response and also considered a drug target for depression and anxiety. Here we report the crystal structure of the transmembrane domain of human CRF1R in complex with the small-molecule antagonist CP-376395 in a hexagonal setting with translational non-crystallographic symmetry. Molecular dynamics and metadynamics simulations on this novel structure and the existing TMD structure for CRF1R provides insight as to how the small molecule ligand gains access to the induced-fit allosteric binding site with implications for the observed selectivity against CRF2R. Furthermore, molecular dynamics simulations performed using a full-length receptor model point to key interactions between the ECD and extracellular loop 3 of the TMD providing insight into the full inactive state of multidomain class B GPCRs.
B类G蛋白偶联受体(GPCR)是对肽激素作出反应的细胞表面蛋白,直到最近,其结构分析还仅限于细胞外结构域(ECD)。促肾上腺皮质激素释放因子受体1型(CRF1R)是一种B类受体,介导应激反应,也被认为是治疗抑郁症和焦虑症的药物靶点。在此,我们报告了人CRF1R跨膜结构域与小分子拮抗剂CP-376395在具有平移非晶体学对称性的六方晶系中的晶体结构。对这一新型结构和现有的CRF1R跨膜结构域(TMD)结构进行分子动力学和元动力学模拟,有助于深入了解小分子配体如何进入诱导契合的变构结合位点,以及对观察到的针对CRF2R的选择性的影响。此外,使用全长受体模型进行的分子动力学模拟指出了ECD与TMD的细胞外环3之间的关键相互作用,有助于深入了解多结构域B类GPCR的完全非活性状态。