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Hindbrain GLP-1 receptor-mediated suppression of food intake requires a PI3K-dependent decrease in phosphorylation of membrane-bound Akt.

Publication ,  Journal Article
Rupprecht, LE; Mietlicki-Baase, EG; Zimmer, DJ; McGrath, LE; Olivos, DR; Hayes, MR
Published in: Am J Physiol Endocrinol Metab
September 15, 2013

Glucagon-like peptide-1 (GLP-1) receptors (GLP-1R) expressed in the nucleus tractus solitarius (NTS) are physiologically required for the control of feeding. Recently, NTS GLP-1R-mediated suppression of feeding was shown to occur via a rapid PKA-induced suppression of AMPK and activation of MAPK signaling. Unknown are the additional intracellular signaling pathways that account for the long-term hypophagic effects of GLP-1R activation. Because cAMP/PKA activity can promote PI3K/PIP3-dependent translocation of Akt to the plasma membrane, we hypothesize that hindbrain GLP-1R-mediated control of feeding involves a PI3K-Akt-dependent pathway. Importantly, the novel evidence presented here challenges the dogmatic view that PI3K phosphorylation results in an obligatory activation of Akt and instead supports a growing body of literature showing that activation of cAMP/PKA can inhibit Akt phosphorylation at the plasma membrane. Behavioral data show that inhibition of hindbrain PI3K activity by a fourth icv administration of LY-294002 (3.07 μg) attenuated the food intake- and body weight-suppressive effects of a fourth icv administration of the GLP-1R agonist exendin-4 (0.3 μg) in rats. Hindbrain administration of triciribine (10 μg), an inhibitor of PIP3-dependent translocation of Akt to the cell membrane, also attenuated the intake-suppressive effects of a fourth icv injection of exendin-4. Immunoblot analyses of ex vivo NTS tissue lysates and in vitro GLP-1R-expressing neurons (GT1-7) support the behavioral findings and show that GLP-1R activation decreases phosphorylation of Akt in a time-dependent fashion. Current data reveal the requirement of PI3K activation, PIP3-dependent translocation of Akt to the plasma membrane, and suppression in phosphorylation of membrane-bound Akt to mediate the food intake-suppressive effects of hindbrain GLP-1R activation.

Duke Scholars

Published In

Am J Physiol Endocrinol Metab

DOI

EISSN

1522-1555

Publication Date

September 15, 2013

Volume

305

Issue

6

Start / End Page

E751 / E759

Location

United States

Related Subject Headings

  • Signal Transduction
  • Rhombencephalon
  • Receptors, Glucagon
  • Rats, Wistar
  • Rats, Sprague-Dawley
  • Rats
  • Proto-Oncogene Proteins c-akt
  • Phosphorylation
  • Phosphoinositide-3 Kinase Inhibitors
  • Phosphatidylinositol 3-Kinases
 

Citation

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ICMJE
MLA
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Rupprecht, L. E., Mietlicki-Baase, E. G., Zimmer, D. J., McGrath, L. E., Olivos, D. R., & Hayes, M. R. (2013). Hindbrain GLP-1 receptor-mediated suppression of food intake requires a PI3K-dependent decrease in phosphorylation of membrane-bound Akt. Am J Physiol Endocrinol Metab, 305(6), E751–E759. https://doi.org/10.1152/ajpendo.00367.2013
Rupprecht, Laura E., Elizabeth G. Mietlicki-Baase, Derek J. Zimmer, Lauren E. McGrath, Diana R. Olivos, and Matthew R. Hayes. “Hindbrain GLP-1 receptor-mediated suppression of food intake requires a PI3K-dependent decrease in phosphorylation of membrane-bound Akt.Am J Physiol Endocrinol Metab 305, no. 6 (September 15, 2013): E751–59. https://doi.org/10.1152/ajpendo.00367.2013.
Rupprecht LE, Mietlicki-Baase EG, Zimmer DJ, McGrath LE, Olivos DR, Hayes MR. Hindbrain GLP-1 receptor-mediated suppression of food intake requires a PI3K-dependent decrease in phosphorylation of membrane-bound Akt. Am J Physiol Endocrinol Metab. 2013 Sep 15;305(6):E751–9.
Rupprecht, Laura E., et al. “Hindbrain GLP-1 receptor-mediated suppression of food intake requires a PI3K-dependent decrease in phosphorylation of membrane-bound Akt.Am J Physiol Endocrinol Metab, vol. 305, no. 6, Sept. 2013, pp. E751–59. Pubmed, doi:10.1152/ajpendo.00367.2013.
Rupprecht LE, Mietlicki-Baase EG, Zimmer DJ, McGrath LE, Olivos DR, Hayes MR. Hindbrain GLP-1 receptor-mediated suppression of food intake requires a PI3K-dependent decrease in phosphorylation of membrane-bound Akt. Am J Physiol Endocrinol Metab. 2013 Sep 15;305(6):E751–E759.

Published In

Am J Physiol Endocrinol Metab

DOI

EISSN

1522-1555

Publication Date

September 15, 2013

Volume

305

Issue

6

Start / End Page

E751 / E759

Location

United States

Related Subject Headings

  • Signal Transduction
  • Rhombencephalon
  • Receptors, Glucagon
  • Rats, Wistar
  • Rats, Sprague-Dawley
  • Rats
  • Proto-Oncogene Proteins c-akt
  • Phosphorylation
  • Phosphoinositide-3 Kinase Inhibitors
  • Phosphatidylinositol 3-Kinases