Capelli Davide, Parravicini Chiara, Pochetti Giorgio, Montanari Roberta, Temporini Caterina, Rabuffetti Marco, Trincavelli Maria Letizia, Daniele Simona, Fumagalli Marta, Saporiti Simona, Bonfanti Elisabetta, Abbracchio Maria P, Eberini Ivano, Ceruti Stefania, Calleri Enrica, Capaldi Stefano
Istituto di Cristallografia, Consiglio Nazionale delle Ricerche, Rome, Italy.
Department of Pharmacological and Biomolecular Sciences, Università degli Studi di Milano, Milan, Italy.
Front Chem. 2020 Jan 10;7:910. doi: 10.3389/fchem.2019.00910. eCollection 2019.
The aim of this study was to investigate the potential of surface plasmon resonance (SPR) spectroscopy for the measurement of real-time ligand-binding affinities and kinetic parameters for GPR17, a G protein-coupled receptor (GPCR) of major interest in medicinal chemistry as potential target in demyelinating diseases. The receptor was directly captured, in a single-step, from solubilized membrane extracts on the sensor chip through a covalently bound anti-6x-His-antibody and retained its ligand binding activity for over 24 h. Furthermore, our experimental setup made possible, after a mild regeneration step, to remove the bound receptor without damaging the antibody, and thus to reuse many times the same chip. Two engineered variants of GPR17, designed for crystallographic studies, were expressed in insect cells, extracted from crude membranes and analyzed for their binding with two high affinity ligands: the antagonist Cangrelor and the agonist Asinex 1. The calculated kinetic parameters and binding constants of ligands were in good agreement with those reported from activity assays and highlighted a possible functional role of the N-terminal residues of the receptor in ligand recognition and binding. Validation of SPR results was obtained by docking and molecular dynamics of GPR17-ligands interactions and by functional studies. The latter allowed us to confirm that Asinex 1 behaves as GPR17 receptor agonist, inhibits forskolin-stimulated adenylyl cyclase pathway and promotes oligodendrocyte precursor cell maturation and myelinating ability.
本研究的目的是探讨表面等离子体共振(SPR)光谱法用于测量GPR17实时配体结合亲和力和动力学参数的潜力。GPR17是一种G蛋白偶联受体(GPCR),在药物化学中作为脱髓鞘疾病的潜在靶点备受关注。该受体通过共价结合的抗6x组氨酸抗体在单一步骤中从溶解的膜提取物直接捕获到传感器芯片上,并在超过24小时内保持其配体结合活性。此外,我们的实验装置在温和的再生步骤后,能够去除结合的受体而不损坏抗体,从而可以多次重复使用同一芯片。为晶体学研究设计的GPR17的两个工程变体在昆虫细胞中表达,从粗膜中提取,并分析它们与两种高亲和力配体的结合:拮抗剂坎格雷洛和激动剂Asinex 1。计算得到的配体动力学参数和结合常数与活性测定报告的结果高度一致,并突出了受体N端残基在配体识别和结合中的可能功能作用。通过GPR17-配体相互作用的对接和分子动力学以及功能研究获得了SPR结果的验证。后者使我们能够确认Asinex 1作为GPR17受体激动剂,抑制福斯高林刺激的腺苷酸环化酶途径,并促进少突胶质前体细胞成熟和髓鞘形成能力。