TY - JOUR
T1 - Glucagon stimulates exocytosis in mouse and rat pancreatic alpha-cells by binding to glucagon receptors
AU - Ma, Xiaosong
AU - Zhang, Yang
AU - Gromada, Jesper
AU - Sewing, Sabine
AU - Berggren, Per-Olof
AU - Buschard, Karsten
AU - Salehi, Albert
AU - Vikman, Jenny
AU - Rorsman, Patrik
AU - Eliasson, Lena
PY - 2005/1
Y1 - 2005/1
N2 - Glucagon, secreted by the pancreatic alpha-cells, stimulates insulin secretion from neighboring beta-cells by cAMP- and protein kinase A (PKA)-dependent mechanisms, but it is not known whether glucagon also modulates its own secretion. We have addressed this issue by combining recordings of membrane capacitance (to monitor exocytosis) in individual alpha-cells with biochemical assays of glucagon secretion and cAMP content in intact pancreatic islets, as well as analyses of glucagon receptor expression in pure alpha-cell fractions by RT-PCR. Glucagon stimulated cAMP generation and exocytosis dose dependently with an EC50 of 1.6-1.7 nm. The stimulation of both parameters plateaued at concentrations beyond 10 nm of glucagon where a more than 3-fold enhancement was observed. The actions of glucagon were unaffected by the GLP-1 receptor antagonist exendin-(9-39) but abolished by des-His1-[Glu9]-glucagon-amide, a specific blocker of the glucagon receptor. The effects of glucagon on alpha-cell exocytosis were mimicked by forskolin and the stimulatory actions of glucagon and forskolin on exocytosis were both reproduced by intracellular application of 0.1 mm cAMP. cAMP-potentiated exocytosis involved both PKA-dependent and -independent (resistant to Rp-cAMPS, an Rp-isomer of cAMP) mechanisms. The presence of the cAMP-binding protein cAMP-guanidine nucleotide exchange factor II in alpha-cells was documented by a combination of immunocytochemistry and RT-PCR and 8-(4-chloro-phenylthio)-2'-O-methyl-cAMP, a cAMP-guanidine nucleotide exchange factor II-selective agonist, mimicked the effect of cAMP and augmented rapid exocytosis in a PKA-independent manner. We conclude that glucagon released from the alpha-cells, in addition to its well-documented systemic effects and paracrine actions within the islet, also represents an autocrine regulator of alpha-cell function.
AB - Glucagon, secreted by the pancreatic alpha-cells, stimulates insulin secretion from neighboring beta-cells by cAMP- and protein kinase A (PKA)-dependent mechanisms, but it is not known whether glucagon also modulates its own secretion. We have addressed this issue by combining recordings of membrane capacitance (to monitor exocytosis) in individual alpha-cells with biochemical assays of glucagon secretion and cAMP content in intact pancreatic islets, as well as analyses of glucagon receptor expression in pure alpha-cell fractions by RT-PCR. Glucagon stimulated cAMP generation and exocytosis dose dependently with an EC50 of 1.6-1.7 nm. The stimulation of both parameters plateaued at concentrations beyond 10 nm of glucagon where a more than 3-fold enhancement was observed. The actions of glucagon were unaffected by the GLP-1 receptor antagonist exendin-(9-39) but abolished by des-His1-[Glu9]-glucagon-amide, a specific blocker of the glucagon receptor. The effects of glucagon on alpha-cell exocytosis were mimicked by forskolin and the stimulatory actions of glucagon and forskolin on exocytosis were both reproduced by intracellular application of 0.1 mm cAMP. cAMP-potentiated exocytosis involved both PKA-dependent and -independent (resistant to Rp-cAMPS, an Rp-isomer of cAMP) mechanisms. The presence of the cAMP-binding protein cAMP-guanidine nucleotide exchange factor II in alpha-cells was documented by a combination of immunocytochemistry and RT-PCR and 8-(4-chloro-phenylthio)-2'-O-methyl-cAMP, a cAMP-guanidine nucleotide exchange factor II-selective agonist, mimicked the effect of cAMP and augmented rapid exocytosis in a PKA-independent manner. We conclude that glucagon released from the alpha-cells, in addition to its well-documented systemic effects and paracrine actions within the islet, also represents an autocrine regulator of alpha-cell function.
KW - ATP-Binding Cassette Transporters/genetics
KW - Animals
KW - Cells, Cultured
KW - Cyclic AMP/analogs & derivatives
KW - Cyclic AMP-Dependent Protein Kinases/metabolism
KW - Electrophysiology
KW - Exocytosis/drug effects
KW - Glucagon/metabolism
KW - Glucagon-Like Peptide-1 Receptor
KW - Guanine Nucleotide Exchange Factors/metabolism
KW - Islets of Langerhans/cytology
KW - Mice
KW - Mice, Knockout
KW - Multidrug Resistance-Associated Proteins/deficiency
KW - Organ Specificity
KW - Patch-Clamp Techniques
KW - Potassium Channels/metabolism
KW - Potassium Channels, Inwardly Rectifying/metabolism
KW - Rats
KW - Receptors, Drug/metabolism
KW - Receptors, Glucagon/metabolism
KW - Sulfonylurea Receptors
KW - Time Factors
U2 - 10.1210/me.2004-0059
DO - 10.1210/me.2004-0059
M3 - Journal article
C2 - 15459251
SN - 0888-8809
VL - 19
SP - 198
EP - 212
JO - Molecular Endocrinology
JF - Molecular Endocrinology
IS - 1
ER -