Abstract
1. Rates of glucose oxidation, lactate output and the intracellular concentration of glucose 6-phosphate were measured in mouse pancreatic islets incubated in vitro. 2. Glucose oxidation rate, measured as the formation of (14)CO(2) from [U-(14)C]glucose, was markedly dependent on extracellular glucose concentration. It was especially sensitive to glucose concentrations between 1 and 2mg/ml. Glucose oxidation was inhibited by mannoheptulose and glucosamine but not by phlorrhizin, 2-deoxyglucose or N-acetylglucosamine. Glucose oxidation was slightly stimulated by tolbutamide but was not significantly affected by adrenaline, diazoxide or absence of Ca(2+) (all of which may inhibit glucose-stimulated insulin release), by arginine or glucagon (which may stimulate insulin release) or by cycloheximide (which may inhibit insulin synthesis). 3. Rates of lactate formation were dependent on the extracellular glucose concentration and were decreased by glucosamine though not by mannoheptulose; tolbutamide increased the rate of lactate output. 4. Islet glucose 6-phosphate concentration was also markedly dependent on extracellular glucose concentration and was diminished by mannoheptulose or glucosamine; tolbutamide and glucagon were without significant effect. Mannose increased islet fructose 6-phosphate concentration but had little effect on islet glucose 6-phosphate concentration. Fructose increased islet glucose 6-phosphate concentration but to a much smaller extent than did glucose. 5. [1-(14)C]Mannose and [U-(14)C]fructose were also oxidized by islets but less rapidly than glucose. Conversion of [1-(14)C]mannose into [1-(14)C]glucose 6-phosphate or [1-(14)C]glucose could not be detected. It is concluded that metabolism of mannose is associated with poor equilibration between fructose 6-phosphate and glucose 6-phosphate. 6. These results are consistent with the idea that glucose utilization in mouse islets may be limited by the rate of glucose phosphorylation, that mannoheptulose and glucosamine may inhibit glucose phosphorylation and that effects of glucose on insulin release may be mediated through metabolism of the sugar.
MeSH Terms
Animals
Arginine/pharmacology
Cycloheximide/pharmacology
Diazoxide/pharmacology
Epinephrine/pharmacology
Fructose/metabolism
Glucagon/pharmacology
Glucosamine/pharmacology
Glucose/metabolism
Hexosephosphates/metabolism
Hexoses/pharmacology
In Vitro Techniques
Islets of Langerhans/metabolism
Lactates/biosynthesis
Mannose/metabolism
Mice
Monosaccharides/pharmacology
Phlorhizin/pharmacology
Tolbutamide/pharmacology
Chemicals
Hexosephosphates
Hexoses
Lactates
Monosaccharides
Fructose
Glucagon
Arginine
Tolbutamide
Cycloheximide
Phlorhizin
Glucose
Glucosamine
Diazoxide
Mannose
Epinephrine
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Ashcroft S J
Hedeskov C J
Randle P J
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