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Identification of the modulatory Ca2+-binding sites of acid-sensing ion channel 1a

Authors :
Ophélie Molton
Olivier Bignucolo
Stephan Kellenberger
Source :
Open Biology, Vol 14, Iss 6 (2024)
Publication Year :
2024
Publisher :
The Royal Society, 2024.

Abstract

Acid-sensing ion channels (ASICs) are neuronal Na+-permeable ion channels activated by extracellular acidification. ASICs are involved in learning, fear sensing, pain sensation and neurodegeneration. Increasing the extracellular Ca2+ concentration decreases the H+ sensitivity of ASIC1a, suggesting a competition for binding sites between H+ and Ca2+ ions. Here, we predicted candidate residues for Ca2+ binding on ASIC1a, based on available structural information and our molecular dynamics simulations. With functional measurements, we identified several residues in cavities previously associated with pH-dependent gating, whose mutation reduced the modulation by extracellular Ca2+ of the ASIC1a pH dependence of activation and desensitization. This occurred probably owing to a disruption of Ca2+ binding. Our results link one of the two predicted Ca2+-binding sites in each ASIC1a acidic pocket to the modulation of channel activation. Mg2+ regulates ASICs in a similar way as does Ca2+. We show that Mg2+ shares some of the binding sites with Ca2+. Finally, we provide evidence that some of the ASIC1a Ca2+-binding sites are functionally conserved in the splice variant ASIC1b. Our identification of divalent cation-binding sites in ASIC1a shows how Ca2+ affects ASIC1a gating, elucidating a regulatory mechanism present in many ion channels.

Details

Language :
English
ISSN :
20462441
Volume :
14
Issue :
6
Database :
Directory of Open Access Journals
Journal :
Open Biology
Publication Type :
Academic Journal
Accession number :
edsdoj.41cb0c001ba42d9a484adb76cade253
Document Type :
article
Full Text :
https://doi.org/10.1098/rsob.240028