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Compounds from Sichuan and Melegueta peppers activate, covalently and non-covalently, TRPA1 and TRPV1 channels.

Publication ,  Journal Article
Riera, CE; Menozzi-Smarrito, C; Affolter, M; Michlig, S; Munari, C; Robert, F; Vogel, H; Simon, SA; le Coutre, J
Published in: Br J Pharmacol
August 2009

BACKGROUND AND PURPOSE: Oily extracts of Sichuan and Melegueta peppers evoke pungent sensations mediated by different alkylamides [mainly hydroxy-alpha-sanshool (alpha-SOH)] and hydroxyarylalkanones (6-shogaol and 6-paradol). We assessed how transient receptor potential ankyrin 1 (TRPA1) and TRP vanilloid 1 (TRPV1), two chemosensory ion channels, participate in these pungent sensations. EXPERIMENTAL APPROACH: The structure-activity relationships of these molecules on TRPA1 and TRPV1 was measured by testing natural and synthetic analogues using calcium and voltage imaging on dissociated dorsal root ganglia neurons and human embryonic kidney 293 cells expressing the wild-type channels or specific cysteine mutants using glutathione trapping as a model to probe TRPA1 activation. In addition, using Trpv1 knockout mice, the compounds' aversive responses were measured in a taste brief-access test. KEY RESULTS: For TRPA1 activation, the cis C6 double bond in the polyenic chain of alpha-SOH was critical, whereas no structural specificity was required for activation of TRPV1. Both 6-shogaol and 6-paradol were found to activate TRPV1 and TRPA1 channels, whereas linalool, an abundant terpene in Sichuan pepper, activated TRPA1 but not TRPV1 channels. Alkylamides and 6-shogaol act on TRPA1 by covalent bonding whereas none of these compounds activated TRPV1 through such interactions. Finally, TRPV1 mutant mice retained sensitivity to 6-shogaol but were not responsive to alpha-SOH. CONCLUSIONS AND IMPLICATIONS: The pungent nature of components of Sichuan and Melegueta peppers was mediated via interactions with TRPA1 and TRPV1 channels and may explain the aversive properties of these compounds.

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Published In

Br J Pharmacol

DOI

EISSN

1476-5381

Publication Date

August 2009

Volume

157

Issue

8

Start / End Page

1398 / 1409

Location

England

Related Subject Headings

  • Zingiberaceae
  • Zanthoxylum
  • Transient Receptor Potential Channels
  • TRPV Cation Channels
  • TRPA1 Cation Channel
  • Structure-Activity Relationship
  • Plant Oils
  • Pharmacology & Pharmacy
  • Mice, Knockout
  • Mice
 

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Riera, C. E., Menozzi-Smarrito, C., Affolter, M., Michlig, S., Munari, C., Robert, F., … le Coutre, J. (2009). Compounds from Sichuan and Melegueta peppers activate, covalently and non-covalently, TRPA1 and TRPV1 channels. Br J Pharmacol, 157(8), 1398–1409. https://doi.org/10.1111/j.1476-5381.2009.00307.x
Riera, C. E., C. Menozzi-Smarrito, M. Affolter, S. Michlig, C. Munari, F. Robert, H. Vogel, S. A. Simon, and J. le Coutre. “Compounds from Sichuan and Melegueta peppers activate, covalently and non-covalently, TRPA1 and TRPV1 channels.Br J Pharmacol 157, no. 8 (August 2009): 1398–1409. https://doi.org/10.1111/j.1476-5381.2009.00307.x.
Riera CE, Menozzi-Smarrito C, Affolter M, Michlig S, Munari C, Robert F, et al. Compounds from Sichuan and Melegueta peppers activate, covalently and non-covalently, TRPA1 and TRPV1 channels. Br J Pharmacol. 2009 Aug;157(8):1398–409.
Riera, C. E., et al. “Compounds from Sichuan and Melegueta peppers activate, covalently and non-covalently, TRPA1 and TRPV1 channels.Br J Pharmacol, vol. 157, no. 8, Aug. 2009, pp. 1398–409. Pubmed, doi:10.1111/j.1476-5381.2009.00307.x.
Riera CE, Menozzi-Smarrito C, Affolter M, Michlig S, Munari C, Robert F, Vogel H, Simon SA, le Coutre J. Compounds from Sichuan and Melegueta peppers activate, covalently and non-covalently, TRPA1 and TRPV1 channels. Br J Pharmacol. 2009 Aug;157(8):1398–1409.
Journal cover image

Published In

Br J Pharmacol

DOI

EISSN

1476-5381

Publication Date

August 2009

Volume

157

Issue

8

Start / End Page

1398 / 1409

Location

England

Related Subject Headings

  • Zingiberaceae
  • Zanthoxylum
  • Transient Receptor Potential Channels
  • TRPV Cation Channels
  • TRPA1 Cation Channel
  • Structure-Activity Relationship
  • Plant Oils
  • Pharmacology & Pharmacy
  • Mice, Knockout
  • Mice