The Met268Pro mutation of mouse TRPA1 changes the effect of caffeine from activation to suppression

Katsuhiro Nagatomo1, Hiroshi Ishii, Tomomi Yamamoto

  • 1Division of Biophysics and Neurobiology, National Institute for Physiological Sciences, Graduate University for Advanced Studies, Aichi, Japan.

Biophysical Journal
|November 30, 2010
PubMed

Insights

Caffeine differentially affects mouse and human TRPA1 channels. A specific mutation in the N-terminal region of mouse TRPA1 alters caffeine

Area of Science:

  • Ion channel research
  • Molecular biology
  • Neuroscience

Background:

  • Transient receptor potential A1 (TRPA1) channels are activated by diverse stimuli.
  • Species-specific differences exist in TRPA1 channel responses to various compounds.
  • Caffeine activates mouse TRPA1 (mTRPA1) but suppresses human TRPA1 (hTRPA1).

Purpose of the Study:

  • To identify the molecular determinant responsible for species-specific TRPA1 responses to caffeine.
  • To elucidate the mechanism underlying caffeine's differential effects on mTRPA1 and hTRPA1.

Main Methods:

  • Utilized Xenopus oocytes for expressing TRPA1 channel variants.
  • Constructed and analyzed functional properties of TRPA1 chimeras.
  • Performed site-directed mutagenesis to pinpoint critical amino acid residues.

Main Results:

  • A region between amino acids 231 and 287 in the N-terminal cytoplasmic domain of mTRPA1 is critical for caffeine response.
  • A Met268Pro point mutation in mTRPA1 reversed caffeine's effect from activation to suppression.
  • The identified region differs from known ligand-binding sites and EF-hand motifs.

Conclusions:

  • The distal N-terminal region of TRPA1 plays a crucial role in regulating channel activity.
  • Caffeine likely interacts with TRPA1 through a unique mechanism involving the N-terminal domain.
  • Molecular determinants for species-specific TRPA1 gating by caffeine have been identified.