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Original Articles

Glucagon-Like Peptide I and Glucose-Dependent Insulinotropic Polypeptide Stimulate Ca2+-Induced Secretion in Rat α-Cells by a Protein Kinase A–Mediated Mechanism

  1. Wei-Guang Ding,
  2. Erik Renström,
  3. Patrik Rorsman,
  4. Karsten Buschard and
  5. Jesper Gromada
  1. Department of Islet Cell Physiology, Novo Nordisk A/S;Kommunehospitalet, Copenhagen, Denmark
  2. Bartholin Instituttet Kommunehospitalet, Copenhagen, Denmark
  1. Address correspondence and reprint requests to Dr. Jesper Gromada, the Department of Islet Cell Physiology, Novo Nordisk A/S, The Symbion Science Park, Fruebjergvej 3, DK-2100 Copenhagen, Denmark. jlg{at}novo.dk.
Diabetes 1997 May; 46(5): 792-800. https://doi.org/10.2337/diab.46.5.792
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Abstract

High-resolution capacitance measurements were used to explore the effects of the gut hormones GLP-1(7-36) amide [glucagon-like peptide I(7-36) amide] and GIP (glucose-dependent insulinotropic polypeptide) on Ca2+-dependent exocytosis in glucagon-secreting rat pancreatic ケ-cells. Both peptides produced a greater than threefold potentiation of secretion evoked by voltage-clamp depolarizations, an effect that was associated with an ∼35% increase of the Ca2+ current. The stimulatory actions of GLP-I(7-36) amide and GIP were mimicked by forskolin and antagonized by the protein kinase A (PKA)- inhibitor Rp-8-Br-cAMPS. The islet hormone somatostatin inhibited the stimulatory action of GLP-I(7-36) amide and GIP via a cyclic AMP–independent mechanism, whereas insulin had no effect on exocytosis. These data suggest that the α-cells are equipped with receptors for GLP-I and GIP and that these peptides, in addition to their well-established insulinotropic capacity, also stimulate glucagon secretion. We propose that the reported inhibitory action of GLP-I on glucagon secretion is accounted for by a paracrine mechanism (e.g., mediated by stimulated release of somatostatin that in turn suppresses exocytosis in the α-cell).

  • Received September 29, 1996.
  • Revision received January 7, 1997.
  • Accepted January 7, 1997.
  • Copyright © 1997 by the American Diabetes Association
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May 1997, 46(5)
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Glucagon-Like Peptide I and Glucose-Dependent Insulinotropic Polypeptide Stimulate Ca2+-Induced Secretion in Rat α-Cells by a Protein Kinase A–Mediated Mechanism
Wei-Guang Ding, Erik Renström, Patrik Rorsman, Karsten Buschard, Jesper Gromada
Diabetes May 1997, 46 (5) 792-800; DOI: 10.2337/diab.46.5.792

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Glucagon-Like Peptide I and Glucose-Dependent Insulinotropic Polypeptide Stimulate Ca2+-Induced Secretion in Rat α-Cells by a Protein Kinase A–Mediated Mechanism
Wei-Guang Ding, Erik Renström, Patrik Rorsman, Karsten Buschard, Jesper Gromada
Diabetes May 1997, 46 (5) 792-800; DOI: 10.2337/diab.46.5.792
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