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Glucagon-like peptide-1 receptor activation in the nucleus accumbens core suppresses feeding by increasing glutamatergic AMPA/kainate signaling

  • Elizabeth G. Mietlicki-Baase
  • , Pavel I. Ortinski
  • , David J. Reiner
  • , Christopher G. Sinon
  • , James E. McCutcheon
  • , R. Christopher Pierce
  • , Mitchell F. Roitman
  • , Matthew R. Hayes
  • University of Pennsylvania
  • University of South Carolina
  • University of Illinois at Chicago

Research output: Contribution to journalArticlepeer-review

105 Scopus citations

Abstract

Glucagon-like peptide-1 receptor (GLP-1R) activation in the nucleus accumbens (NAc) core is pharmacologically and physiologically relevant for regulating palatable food intake. Here, we assess whether GLP-1R signaling in the NAc core of rats modulates GABAergic medium spiny neurons (MSNs) through presynaptic-glutamatergic and/or presynaptic-dopaminergic signaling to control feeding. First, ex vivo fast-scan cyclic voltammetry showed that the GLP-1R agonist exendin-4 (Ex-4) does not alter dopamine release in the NAc core. Instead, support for a glutamatergic mechanism was provided by ex vivo electrophysiological analyses showing that Ex-4 activates presynaptic GLP-1Rs in the NAc core to increase the activity of MSNs via a glutamatergic, AMPA/kainate receptor-mediated mechanism, indicated by increased mEPSC frequency and decreased paired pulse ratio in core MSNs. Only a small, direct excitatory effect on MSNs by Ex-4 was observed, suggesting that the contribution of postsynaptic GLP-1R to MSN activity is minimal. The behavioral relevance of the electrophysiological data was confirmed by the finding that intracore injection of the AMPA/kainate receptor antagonist CNQX attenuated the ability of NAc core GLP-1R activation by Ex-4 microinjection to suppress food intake and body weight gain; in contrast, intracore NMDA receptor blockade by AP-5 did not inhibit the energy balance effects of NAc core Ex-4. Together, these data provide evidence for a novel glutamatergic, but not dopaminergic, mechanism by which NAc core GLP-1Rs promote negative energy balance.

Original languageEnglish
Pages (from-to)6985-6992
Number of pages8
JournalJournal of Neuroscience
Volume34
Issue number20
DOIs
StatePublished - 2014

Keywords

  • Diabetes
  • Dopamine
  • Energy balance
  • Mesolimbic
  • Obesity
  • VTA

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