变构调节
细胞内
功能(生物学)
受体
细胞生物学
化学
领域(数学分析)
生物
计算生物学
生物化学
数学分析
数学
作者
Yi-Yu Lin,Yan Lu,C. Li,Xue-Fei Ma,Miao-Qing Shao,Yuhao Gao,Yu-Qing Zhang,Hai-Ning Jiang,Yan Liu,Yang Yang,Li‐Dong Huang,Peng Cao,Heng‐Shan Wang,Jin Wang,Ye Yu
标识
DOI:10.1038/s41467-024-51815-7
摘要
P2X receptors, a subfamily of ligand-gated ion channels activated by extracellular ATP, are implicated in various physiopathological processes, including inflammation, pain perception, and immune and respiratory regulations. Structural determinations using crystallography and cryo-EM have revealed that the extracellular three-dimensional architectures of different P2X subtypes across various species are remarkably identical, greatly advancing our understanding of P2X activation mechanisms. However, structural studies yield paradoxical architectures of the intracellular domain (ICD) of different subtypes (e.g., P2X3 and P2X7) at the apo state, and the role of the ICD in P2X functional regulation remains unclear. Here, we propose that the P2X3 receptor's ICD has an apo state conformation similar to the open state but with a less tense architecture, containing allosteric sites that influence P2X3's physiological and pathological roles. Using covalent occupancy, engineered disulfide bonds and voltage-clamp fluorometry, we suggested that the ICD can undergo coordinated motions with the transmembrane domain of P2X3, thereby facilitating channel activation. Additionally, we identified a novel P2X3 enhancer, PSFL77, and uncovered its potential allosteric site located in the 1α3β domain of the ICD. PSFL77 modulated pain perception in P2rx3
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