bioRxiv · 10.64898/2026.01.02.697424
PUFA modulation of ASIC3 involves both specific and lipid solvent-like interactions
Abstract
AbstractInflammatory mediators including polyunsaturated fatty acids (PUFAs) potentiate ASIC3 by altering channel gating, yet the molecular basis for their interactions remains poorly defined. Using all-atom MD simulations and electrophysiology, we show that DHA accumulates around ASIC3 through interactions with a membrane-facing electropositive region along the outer leaflet of TM1. In the open state, a more buried binding site for the lipid is exposed that allows the carboxylate head group to bind a critical arginine along with nearby polar residues. Mutation of this site prevents the slowing of channel desensitization but only reduces the effect PUFAs have on the pH dependence of activation. The same mutations do not prevent regulation by other lipid classes like N-acyl amino acids or lysophosphatidyl choline. Our results provide the first detailed description of a PUFA binding site on ASICs, offering new insights into lipid modulation and potential strategies for developing novel treatments for inflammatory pain.
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Roth, R., Bandarupalli, R., Klipp, R. C., Li, J., Bankston, J. R.. 2026-01-02. PUFA modulation of ASIC3 involves both specific and lipid solvent-like interactions. https://doi.org/10.64898/2026.01.02.697424
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