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Nat Commun ; 4: 1682, 2013.
Article in English | MEDLINE | ID: mdl-23575686

ABSTRACT

Aberrant mechanosensation has an important role in different pain states. Here we show that Epac1 (cyclic AMP sensor) potentiation of Piezo2-mediated mechanotransduction contributes to mechanical allodynia. Dorsal root ganglia Epac1 mRNA levels increase during neuropathic pain, and nerve damage-induced allodynia is reduced in Epac1-/- mice. The Epac-selective cAMP analogue 8-pCPT sensitizes mechanically evoked currents in sensory neurons. Human Piezo2 produces large mechanically gated currents that are enhanced by the activation of the cAMP-sensor Epac1 or cytosolic calcium but are unaffected by protein kinase C or protein kinase A and depend on the integrity of the cytoskeleton. In vivo, 8-pCPT induces long-lasting allodynia that is prevented by the knockdown of Epac1 and attenuated by mouse Piezo2 knockdown. Piezo2 knockdown also enhanced thresholds for light touch. Finally, 8-pCPT sensitizes responses to innocuous mechanical stimuli without changing the electrical excitability of sensory fibres. These data indicate that the Epac1-Piezo2 axis has a role in the development of mechanical allodynia during neuropathic pain.


Subject(s)
Guanine Nucleotide Exchange Factors/physiology , Hyperalgesia/etiology , Ion Channels/physiology , Animals , Base Sequence , Cells, Cultured , Guanine Nucleotide Exchange Factors/metabolism , Mice , Mice, Inbred C57BL , Mice, Inbred CBA , Oligodeoxyribonucleotides , Signal Transduction
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