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Methylglyoxal Activates Nociceptors through Transient Receptor Potential Channel A1 (TRPA1)

Authors :
Mirjam J. Eberhardt
Milos R. Filipovic
Andreas Leffler
Jeanne de la Roche
Katrin Kistner
Michael J. Fischer
Thomas Fleming
Katharina Zimmermann
Ivana Ivanovic-Burmazovic
Peter P. Nawroth
Angelika Bierhaus
Peter W. Reeh
Susanne K. Sauer
Source :
Journal of Biological Chemistry. 287:28291-28306
Publication Year :
2012
Publisher :
Elsevier BV, 2012.

Abstract

Neuropathic pain can develop as an agonizing sequela of diabetes mellitus and chronic uremia. A chemical link between both conditions of altered metabolism is the highly reactive compound methylglyoxal (MG), which accumulates in all cells, in particular neurons, and leaks into plasma as an index of the severity of the disorder. The electrophilic structure of this cytotoxic ketoaldehyde suggests TRPA1, a receptor channel deeply involved in inflammatory and neuropathic pain, as a molecular target. We demonstrate that extracellularly applied MG accesses specific intracellular binding sites of TRPA1, activating inward currents and calcium influx in transfected cells and sensory neurons, slowing conduction velocity in unmyelinated peripheral nerve fibers, and stimulating release of proinflammatory neuropeptides from and action potential firing in cutaneous nociceptors. Using a model peptide of the N terminus of human TRPA1, we demonstrate the formation of disulfide bonds based on MG-induced modification of cysteines as a novel mechanism. In conclusion, MG is proposed to be a candidate metabolite that causes neuropathic pain in metabolic disorders and thus is a promising target for medicinal chemistry.

Details

ISSN :
00219258
Volume :
287
Database :
OpenAIRE
Journal :
Journal of Biological Chemistry
Accession number :
edsair.doi...........e61cca910d5469927b3c5e3685e01689