Related Experiment Video
Updated: Jun 6, 2026

Assaying β-amyloid Toxicity using a Transgenic C. elegans Model
Published on: October 9, 2010
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.
Abstract:
The transient receptor potential A1 channel (TRPA1) is activated by various compounds, including isothiocyanates, menthol, and cinnamaldehyde. The sensitivities of the rodent and human isoforms of TRPA1 to menthol and the cysteine-attacking compound CMP1 differ, and the molecular determinants for these differences have been identified in the 5th transmembrane region (TM5) for menthol and TM6 for CMP1. We recently reported that caffeine activates mouse TRPA1 (mTRPA1) but suppresses human TRPA1 (hTRPA1). Here we aimed to identify the molecular determinant that is responsible for species-specific differences in the response to caffeine by analyzing the functional properties of various chimeras expressed in Xenopus oocytes. We initially found that the region between amino acids 231 and 287, in the distal N-terminal cytoplasmic region of mTRPA1, is critical. In a mutagenesis study of this region, we subsequently observed that introduction of a Met268Pro point mutation into mTRPA1 changed the effect of caffeine from activation to suppression. Because the region including Met-268 is different from other reported ligand-binding sites and from the EF-hand motif, these results suggest that the caffeine response is mediated by a unique mechanism, and confirm the importance of the distal N-terminal region for regulation of TRPA1 channel activity.
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.
More Related Videos
Related Concept Videos
Pharmacogenetics of Drug Targets: β₂-Adrenergic Receptors, Apo E, Thymidylate Synthase
Drugs Affecting Neurotransmitter Release or Uptake

