Functional dynamics and allosteric modulation of TRPA1

Structure. 2023 Dec 7;31(12):1556-1566.e3. doi: 10.1016/j.str.2023.08.018. Epub 2023 Sep 19.

Abstract

The cation channel TRPA1 is a potentially important drug target, and characterization of TRPA1 functional dynamics might help guide structure-based drug design. Here, we present results from long-timescale molecular dynamics simulations of TRPA1 with an allosteric activator, allyl isothiocyanate (AITC), in which we observed spontaneous transitions from a closed, non-conducting channel conformation into an open, conducting conformation. Based on these transitions, we propose a gating mechanism in which movement of a regulatory TRP-like domain allosterically translates into pore opening in a manner reminiscent of pore opening in voltage-gated ion channels. In subsequent experiments, we found that mutations that disrupt packing of the S4-S5 linker-TRP-like domain and the S5 and S6 helices also affected channel activity. In simulations, we also observed A-967079, a known allosteric inhibitor, binding between helices S5 and S6, suggesting that A-967079 may suppress activity by stabilizing a non-conducting pore conformation-a finding consistent with our proposed gating mechanism.

Keywords: AITC; TRP channel; TRPA1; allosteric modulation; antagonist; electrophysiology; ion channel; permeation.

MeSH terms

  • Mutation
  • Oximes*
  • Protein Structure, Secondary

Substances

  • A 967079
  • Oximes