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PMID: 10331404 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

cAMP enhances insulin secretion by an action on the ATP-sensitive K+ channel-independent pathway of glucose signaling in rat pancreatic islets.

Diabetes ·Vol. 48 ·No. 5 ·1999-05-00 ·Pages 1006-12

Yajima H, Komatsu M, Schermerhorn T, Aizawa T, Kaneko T, Nagai M, Sharp GW, Hashizume K

Abstract

Cyclic AMP potentiates glucose-stimulated insulin release by actions predominantly at a site, or sites, distal to the elevation of the cytosolic free Ca2+ concentration ([Ca2+]i). Glucose also acts at a site, or sites, distal to the elevation of [Ca2+]i via the ATP-sensitive K+ channel (K+ATP channel)-independent signaling pathway. Accordingly, using rat pancreatic islets, we studied the location of the action of cAMP and its interaction with the glucose pathway. Forskolin, an activator of adenylyl cyclase, raised intracellular cAMP levels and enhanced KCl-induced (Ca2+ -stimulated) insulin release in the presence, but not in the absence, of glucose. Thus, cAMP has no direct effect on Ca2+ -stimulated insulin release. The interaction between cAMP and glucose occurs at a step distal to the elevation of [Ca2+]i because forskolin enhancement of KCl-induced insulin release, in the presence of glucose, was demonstrated in the islets treated with diazoxide, a K+ATP channel opener. The enhancement of insulin release was not associated with any increase in [Ca2+]i. Furthermore, the interaction between cAMP and glucose was unequivocally observed even under stringent Ca2+ -free conditions, indicating the Ca2+ -independent action of cAMP. This action of cAMP is physiologically relevant, because not only forskolin but also glucagon-like peptide 1, glucose-dependent insulinotropic polypeptide, and pituitary adenylyl cyclase activating polypeptide exerted similar actions. In conclusion, the cAMP/protein kinase A pathway has no direct effect on Ca2+ -stimulated insulin exocytosis. Rather, it strongly potentiates insulin release by increasing the effectiveness of the K+ATP channel-independent action of glucose.

MeSH Terms
Adenosine Triphosphate/pharmacology Animals Calcium/pharmacology Colforsin/pharmacology Cyclic AMP/metabolism,pharmacology Diazoxide/pharmacology Enzyme Activation/drug effects Glucose/pharmacology Insulin/metabolism Insulin Secretion Islets of Langerhans/drug effects,metabolism Male Potassium Channels/physiology Potassium Chloride/pharmacology Protein Kinase C/metabolism Rats Rats, Wistar Signal Transduction Tetradecanoylphorbol Acetate/pharmacology
Chemicals
Insulin Potassium Channels Colforsin Potassium Chloride Adenosine Triphosphate Cyclic AMP Protein Kinase C Glucose Tetradecanoylphorbol Acetate Diazoxide Calcium
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Yajima H
Department of Aging Medicine and Geriatrics, Shinshu University School of Medicine, Matsumoto, Japan.
Komatsu M
Schermerhorn T
Aizawa T
Kaneko T
Nagai M
Sharp G W
Hashizume K
Article Info
Journal
Diabetes
Abbr.
Diabetes
ISSN
0012-1797
Published
1999-05-00
Pages
1006-12
Language
English
Region
United States
NLM ID
0372763
Subset
IM
Grants
NIDDK NIH HHS · R01-DK-42063 · United States
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