Literature DB >> 17314320

Activation of TRPA1 channels by the fatty acid amide hydrolase inhibitor 3'-carbamoylbiphenyl-3-yl cyclohexylcarbamate (URB597).

Wende Niforatos1, Xu-Feng Zhang, Marc R Lake, Karl A Walter, Torben Neelands, Thomas F Holzman, Victoria E Scott, Connie R Faltynek, Robert B Moreland, Jun Chen.   

Abstract

As a member of the transient receptor potential (TRP) ion channel superfamily, the ligand-gated ion channel TRPA1 has been implicated in nociceptive function and pain states. The endogenous ligands that activate TRPA1 remain unknown. However, various agonists have been identified, including environmental irritants (e.g., acrolein) and ingredients of pungent natural products [e.g., allyl isothiocyanate (ITC), cinnamaldehyde, allicin, and gingerol]. In general, these agents are either highly reactive, nonselective, or not potent or efficacious, significantly limiting their utilities in the study of TRPA1 channel properties and biological functions. In a search for novel TRPA1 agonists, we identified 3'-carbamoylbiphenyl-3-yl cyclohexylcarbamate (URB597), a potent and systemically active inhibitor of fatty acid amide hydrolase (FAAH). This enzyme is responsible for anandamide degradation and therefore has been pursued as an antinociceptive and antiepileptic drug target. Using Ca(2+) influx assays and patch-clamp techniques, we demonstrated that URB597 could activate heterologously expressed human and rat TRPA1 channels, whereas two other FAAH inhibitors (i.e., URB532 and Compound 7) had no effect. When applied to inside-out membrane patches expressing rat TRPA1, URB597 elicited single-channel activities with a unitary conductance of 40 pS. Furthermore, URB597 activated TRPA1 channels endogenously expressed in a population of rat dorsal root ganglion neurons that also responded to ITC. In contrast to its effect on TRPA1, URB597 inhibited TRPM8 and had no effects on TRPV1 or TRPV4. Thus, we conclude that URB597 is a novel agonist of TRPA1 and probably activates the channel through a direct gating mechanism.

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Year:  2007        PMID: 17314320     DOI: 10.1124/mol.106.033621

Source DB:  PubMed          Journal:  Mol Pharmacol        ISSN: 0026-895X            Impact factor:   4.436


  22 in total

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3.  The FAAH inhibitor URB597 efficiently reduces tyrosine hydroxylase expression through CB₁- and FAAH-independent mechanisms.

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4.  Evidence for involvement of TRPA1 in the detection of vibrations by hair bundle mechanoreceptors in sea anemones.

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Authors:  Armen N Akopian; Nikita B Ruparel; Nathaniel A Jeske; Amol Patwardhan; Kenneth M Hargreaves
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6.  How irritating: the role of TRPA1 in sensing cigarette smoke and aerogenic oxidants in the airways.

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7.  Activation of TRPA1 channels by fenamate nonsteroidal anti-inflammatory drugs.

Authors:  Hongzhen Hu; Jinbin Tian; Yingmin Zhu; Chunbo Wang; Rui Xiao; Jeffrey M Herz; Jackie D Wood; Michael X Zhu
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Review 8.  TRP channels and analgesia.

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Review 9.  Non-CB1, non-CB2 receptors for endocannabinoids, plant cannabinoids, and synthetic cannabimimetics: focus on G-protein-coupled receptors and transient receptor potential channels.

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Review 10.  Modulation of neuropathic-pain-related behaviour by the spinal endocannabinoid/endovanilloid system.

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