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Am J Physiol Gastrointest Liver Physiol (August 28, 2002). doi:10.1152/ajpgi.00216.2002
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Articles in PresS, published online ahead of print August 28, 2002
Am J Physiol Gastrointest Liver Physiol, 10.1152/ajpgi.00216.2002
Submitted on June 7, 2002
Accepted on August 20, 2002

Activation of Group II Metabotropic Glutamate Receptors Inhibits Voltage-Gated Ca2+ Currents in Myenteric Neurons of the Guinea Pig Ileum

Wei-Ping Chen1 and Annette L. Kirchgessner1*

1 Department of Physiology and Pharmacology, SUNY Downstate Medical Center, Brooklyn, NY, USA

* To whom correspondence should be addressed. E-mail: annette_2_kirchgessner{at}gsk.com.

The enteric nervous system (ENS) contains functional ionotropic and group I metabotropic glutamate (mGlu) receptors. In this study, we determined whether enteric neurons express group II mGlu receptors and the effects of mGlu receptor activation on voltage-gated Ca2+ currents in these cells. (2R,4R)-4-aminopyrrolidine-2,4-dicarboxylate (2R,4R-APDC), a group II mGlu receptor agonist, reversibly suppressed the Ba2+ current in myenteric neurons isolated from the guinea pig ileum. Significant inhibition was also produced by L-glutamate and the group II mGlu receptor agonists, (2S,2'R,3'R)-2-(2',3'-dicarboxycyclopropyl)glycine (DCGIV)and (2S,1'S,2'S)-2-(2-carboxycyclopropyl)glycine (L-CCG-I), with a rank order potency of 2R,4R-APDC > DCG-IV > L-glutamate > L-CCG-I, and was reduced by the group II mGlu receptor antagonist LY341495. Pretreatment of neurons with pertussis toxin (PTX)reduced the action of mGlu receptor agonists, suggesting participation of Gi/Go proteins. Finally, {omega}-conotoxin-GVIA blocked current suppression by DCG-IV, suggesting modulation of N-type calcium channels. mGlu2/3 receptor immunoreactivity was displayed by neurons in culture and in the submucosal and myenteric plexus of the ileum. A subset of these cells displayed a glutamatergic phenotype as shown by the expression of vesicular glutamate transporter 2. These results provide the first evidence for functional group II mGlu receptors in the ENS and show that these receptors are PTX-sensitive and negatively coupled to N-type calcium channels. Inhibition of N-type calcium channels produced by activation of group II mGlu receptors may modulate enteric neurotransmission.




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