脚手架
变构调节
药品
计算生物学
分子药理学
药物发现
敌手
兴奋剂
HEK 293细胞
受体
G蛋白偶联受体
毛茛
化学
药理学
结构-活动关系
酶联受体
离子通道
功能选择性
变构调节剂
受体拮抗剂
分子模型
体外
信号转导
血浆蛋白结合
药物开发
作者
Adam Oken,Andreea L. Turcu,Eva Tzortzini,Kyriakos Georgiou,Jessica Nagel,Franka G. Westermann,Marta Barniol‐Xicota,Jonas Seidler,Garam Kim,So‐Deok Lee,Annette Nicke,Yong‐Chul Kim,Christa E. Müller,Antonios Kolocouris,Santiago Vázquez,Steven Mansoor
标识
DOI:10.1038/s41467-025-62643-8
摘要
The P2X7 receptor is an ATP-gated ion channel that activates inflammatory pathways involved in diseases such as cancer, atherosclerosis, and neurodegeneration. However, despite the potential benefits of blocking overactive signaling, no P2X7 receptor antagonists have been approved for clinical use. Understanding species-specific pharmacological effects of existing antagonists has been challenging, in part due to the dearth of molecular information on receptor orthologs. Here, to identify distinct molecular features in the human receptor, we determine high-resolution cryo-EM structures of the full-length wild-type human P2X7 receptor in apo closed and ATP-bound open state conformations and draw comparisons with structures of other orthologs. We also report a cryo-EM structure of the human receptor in complex with an adamantane-based inhibitor, which we leverage, in conjunction with functional data and molecular dynamics simulations, to design a potent and selective antagonist with a unique polycyclic scaffold. Functional and structural analysis reveal how this optimized ligand, termed UB-MBX-46, interacts with the classical allosteric pocket of the human P2X7 receptor with subnanomolar potency and high selectivity, revealing its significant therapeutic potential.
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