Back to Search Start Over

Finely ordered intracellular domain harbors an allosteric site to modulate physiopathological function of P2X3 receptors.

Authors :
Lin, Yi-Yu
Lu, Yan
Li, Chun-Yun
Ma, Xue-Fei
Shao, Miao-Qing
Gao, Yu-Hao
Zhang, Yu-Qing
Jiang, Hai-Ning
Liu, Yan
Yang, Yang
Huang, Li-Dong
Cao, Peng
Wang, Heng-Shan
Wang, Jin
Yu, Ye
Source :
Nature Communications; 9/3/2024, Vol. 15 Issue 1, p1-15, 15p
Publication Year :
2024

Abstract

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<superscript>+/+</superscript>, but not in P2rx3<superscript>−/−</superscript>, mice, indicating that the 1α3β, a "tunable" region implicated in the regulation of P2X3 functions. Thus, when P2X3 is in its apo state, its ICD architecture is fairly ordered rather than an unstructured outward folding, enabling allosteric modulation of the signaling of P2X3 receptors. The intracellular domain (ICD) of ion channels is crucial for the regulation of channel activity and signal transduction. Here the authors show that the P2X3 receptor's ICD can move in coordination with the transmembrane region and facilitate channel activation. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
20411723
Volume :
15
Issue :
1
Database :
Complementary Index
Journal :
Nature Communications
Publication Type :
Academic Journal
Accession number :
179413772
Full Text :
https://doi.org/10.1038/s41467-024-51815-7