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Facilitation of transmitter release from rat sympathetic neurons via presynaptic P2Y 1 receptors
Author(s) -
Chandaka Giri K,
Salzer Isabella,
Drobny Helmut,
Boehm Stefan,
Schicker Klaus W
Publication year - 2011
Publication title -
british journal of pharmacology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.432
H-Index - 211
eISSN - 1476-5381
pISSN - 0007-1188
DOI - 10.1111/j.1476-5381.2011.01466.x
Subject(s) - p2y receptor , pertussis toxin , receptor , superior cervical ganglion , agonist , stimulation , biology , phospholipase c , microbiology and biotechnology , g protein , endocrinology , biochemistry
BACKGROUND AND PURPOSE P2Y 1 , P2Y 2 , P2Y 4 , P2Y 12 and P2Y 13 receptors for nucleotides have been reported to mediate presynaptic inhibition, but unequivocal evidence for facilitatory presynaptic P2Y receptors is not available. The search for such receptors was the purpose of this study. EXPERIMENTAL APPROACH In primary cultures of rat superior cervical ganglion neurons and in PC12 cell cultures, currents were recorded via the perforated patch clamp technique, and the release of [ 3 H]‐noradrenaline was determined. KEY RESULTS ADP, 2‐methylthio‐ATP and ATP enhanced stimulation‐evoked 3 H overflow from superior cervical ganglion neurons, treated with pertussis toxin to prevent the signalling of inhibitory G proteins. This effect was abolished by P2Y 1 antagonists and by inhibition of phospholipase C, but not by inhibition of protein kinase C or depletion of intracellular Ca 2+ stores. ADP and a specific P2Y 1 agonist caused inhibition of Kv7 channels, and this was prevented by a respective antagonist. In neurons not treated with pertussis toxin, 3 H overflow was also enhanced by a specific P2Y 1 agonist and by ADP, but only when the P2Y 12 receptors were blocked. ADP also enhanced K + ‐evoked 3 H overflow from PC12 cells treated with pertussis toxin, but only in a clone expressing recombinant P2Y 1 receptors. CONCLUSIONS AND IMPLICATIONS These results demonstrate that presynaptic P2Y 1 receptors mediate facilitation of transmitter release from sympathetic neurons most likely through inhibition of Kv7 channels.

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