Abstract
Treatment of hepatocytes with either NH4Cl (10mM) or fructose (10mM) blocks insulin's activation of the 'dense-vesicle' cyclic AMP phosphodiesterase. The ability of insulin (10 nM) to decrease intracellular cyclic AMP concentrations raised by glucagon (10 nM) was unaffected by pre-treatment with either NH4Cl (10 mM) or fructose (10 mM). It is concluded that the 'dense-vesicle' enzyme does not play a significant role in this action of insulin and that as yet unidentified cyclic AMP phosphodiesterase(s) must be activated by insulin. Treatment of hepatocytes with either NH4Cl or fructose appeared to increase, reversibly, cyclic AMP phosphodiesterase activity. When N6-(phenylisopropyl)adenosine was used to prevent glucagon from blocking insulin's activation of the plasma-membrane cyclic AMP phosphodiesterase activity, insulin's ability to decrease intracellular cyclic AMP concentrations in glucagon-treated hepatocytes was increased markedly. Insulin's activation of the plasma-membrane cyclic AMP phosphodiesterase activity can exert a potent effect in decreasing intracellular cyclic AMP concentrations elevated by glucagon.
MeSH Terms
3',5'-Cyclic-AMP Phosphodiesterases/metabolism
Ammonium Chloride/pharmacology
Animals
Cell Membrane/drug effects,enzymology
Cyclic AMP/metabolism
Enzyme Activation/drug effects
Fructose/pharmacology
Glucagon/pharmacology
In Vitro Techniques
Insulin/pharmacology
Liver/cytology,drug effects,enzymology
Male
Rats
Rats, Inbred Strains
Chemicals
Insulin
Ammonium Chloride
Fructose
Glucagon
Cyclic AMP
3',5'-Cyclic-AMP Phosphodiesterases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Heyworth C M
Wallace A V
Wilson S R
Houslay M D
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