Capsaicin-insensitivity of TRPV1-R575D mutant located at the lipid-water-interface region can be rescued by either extracellular Ca2+-chelation or cholesterol reduction

Neurochem Int. 2024 Oct:179:105826. doi: 10.1016/j.neuint.2024.105826. Epub 2024 Aug 6.

Abstract

TRPV1 acts as a unique polymodal ion channel having distinct structure and gating properties. In this context, TRPV1-R575D represents a special mutant located at the inner lipid-water-interface (LWI) region that has less possibility of interaction with membrane cholesterol. In control conditions, this lab-generated mutant of TRPV1 shows no "ligand-sensitivity", reduced surface expression, reduced localization in the lipid rafts, yet induces high cellular lethality. Notably, the cellular lethality induced by TRPV1-R575D expression can be rescued by adding 5'I-RTX (a specific inhibitor of TRPV1) or by introducing another mutation in the next position, i.e. in TRPV1-R575D/D576R. In this work we characterized TRPV1-R575D and TRPV1-R575D/D576R mutants in different cellular conditions and compared with the TRPV1-WT. We report that the "ligand-insensitivity" of TRPV1-R575D can be rescued in certain conditions, such as by chelation of extracellular Ca2+, or by reduction of the membrane cholesterol. Here we show that Ca2+ plays an important role in the channel gating of TRPV1-WT as well as LWI mutants (TRPV1-R575D, TRPV1-R575D/D576R). However, chelation of intracellular Ca2+ or depletion of ER Ca2+ did not have a significant effect on the TRPV1-R575D. Certain properties related to channel gating of mutant TRPV1-R575D/D576R can be rescued partially or fully in a context -dependent manner. Cholesterol depletion also alters these properties. Our data suggests that lower intracellular basal Ca2+ acts as a pre-requisite for further opening of TRPV1-R575D. These findings enable better understanding of the structure-function relationship of TRPV1 and may be critical in comprehending the channelopathies induced by other homologous thermosensitive TRPVs.

Keywords: Ca(2+) dependent desensitization; Capsaicin; Cholesterol; Lipid raft; Lipid water interface; TRPV1.

MeSH terms

  • Animals
  • Calcium* / metabolism
  • Capsaicin* / pharmacology
  • Chelating Agents / pharmacology
  • Cholesterol* / metabolism
  • HEK293 Cells
  • Humans
  • Mutation
  • TRPV Cation Channels* / genetics
  • TRPV Cation Channels* / metabolism
  • Water / chemistry
  • Water / metabolism

Substances

  • TRPV Cation Channels
  • Cholesterol
  • Capsaicin
  • Calcium
  • TRPV1 protein, human
  • Water
  • Chelating Agents