虚拟筛选
化学
G蛋白偶联受体
对接(动物)
腺苷受体
药物发现
受体
结构-活动关系
腺苷
药理学
立体化学
组合化学
计算生物学
生物化学
体外
兴奋剂
生物
医学
护理部
作者
Pierre Matricon,Thi Nguyen,Duc Duy Vo,Jo‐Anne Baltos,Mariama Jaiteh,Andreas Luttens,Stefanie Kampen,Arthur Christopoulos,Jan Kihlberg,Lauren T. May,Jens Carlsson
标识
DOI:10.1016/j.ejmech.2023.115419
摘要
Development of subtype-selective leads is essential in drug discovery campaigns targeting G protein-coupled receptors (GPCRs). Herein, a structure-based virtual screening approach to rationally design subtype-selective ligands was applied to the A1 and A2A adenosine receptors (A1R and A2AR). Crystal structures of these closely related subtypes revealed a non-conserved subpocket in the binding sites that could be exploited to identify A1R selective ligands. A library of 4.6 million compounds was screened computationally against both receptors using molecular docking and 20 A1R selective ligands were predicted. Of these, seven antagonized the A1R with micromolar activities and several compounds displayed slight selectivity for this subtype. Twenty-seven analogs of two discovered scaffolds were designed, resulting in antagonists with nanomolar potency and up to 76-fold A1R-selectivity. Our results show the potential of structure-based virtual screening to guide discovery and optimization of subtype-selective ligands, which could facilitate the development of safer drugs.
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