Mechanism by which glucose and insulin inhibit net hepatic glycogenolysis in humans.
Open Access
- 15 March 1998
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 101 (6), 1203-1209
- https://doi.org/10.1172/jci579
Abstract
13C NMR spectroscopy was used to assess flux rates of hepatic glycogen synthase and phosphorylase in overnight-fasted subjects under one of four hypoglucagonemic conditions: protocol I, hyperglycemic (approximately 10 mM) -hypoinsulinemia (approximately 40 pM); protocol II, euglycemic (approximately 5 mM) -hyperinsulinemia (approximately 400 pM); protocol III, hyperglycemic (approximately 10 mM) -hyperinsulinemia (approximately 400 pM); and protocol IV; euglycemic (approximately 5 mM) -hypoinsulinemia (approximately 40 pM). Inhibition of net hepatic glycogenolysis occurred in both protocols I and II compared to protocol IV but via a different mechanism. Inhibition of net hepatic glycogenolysis occurred in protocol I mostly due to decreased glycogen phosphorylase flux, whereas in protocol II inhibition of net hepatic glycogenolysis occurred exclusively through the activation of glycogen synthase flux. Phosphorylase flux was unaltered, resulting in extensive glycogen cycling. Relatively high rates of net hepatic glycogen synthesis were observed in protocol III due to combined stimulation of glycogen synthase flux and inhibition of glycogen phosphorylase flux. In conclusion, under hypoglucagonemic conditions: (a) hyperglycemia, per se, inhibits net hepatic glycogenolysis primarily through inhibition of glycogen phosphorylase flux; (b) hyperinsulinemia, per se, inhibits net hepatic glycogenolysis primarily through stimulation of glycogen synthase flux; (c) inhibition of glycogen phosphorylase and the activation of glycogen synthase are not necessarily coupled and coordinated in a reciprocal fashion; and (d) promotion of hepatic glycogen cycling may be the principal mechanism by which insulin inhibits net hepatic glycogenolysis and endogenous glucose production in humans under euglycemic conditions.This publication has 36 references indexed in Scilit:
- The roles of insulin and glucagon in the regulation of hepatic glycogen synthesis and turnover in humans.Journal of Clinical Investigation, 1996
- 13C-nuclear magnetic resonance spectroscopy studies of hepatic glucose metabolism in normal subjects and subjects with insulin-dependent diabetes mellitus.Journal of Clinical Investigation, 1994
- Quantitation of Hepatic Glycogenolysis And Gluconeogenesis in Fasting Humans With 13 C NMRScience, 1991
- Insulin activates 6-phosphofructo-2-kinase and pyruvate kinase in the liver: evidences for an action via a phosphatasePublished by Elsevier ,1990
- Quantitation of the pathways of hepatic glycogen formation on ingesting a glucose load.Journal of Clinical Investigation, 1987
- Regulation of hepatic glucose metabolism in humansDiabetes/Metabolism Research and Reviews, 1987
- Glucose Disposal during Insulinopenia in Somatostatin-Treated DogsJournal of Clinical Investigation, 1978
- The role of insulin and glucagon in the regulation of basal glucose production in the postabsorptive dog.Journal of Clinical Investigation, 1976
- Effects of anaerobiosis, glucose, insulin and glucagon on glycogen metabolism in isolated parenchymal rat liver cellsFEBS Letters, 1973
- Control of rat liver glycogen synthetase and phosphorylase activities by glucoseBiochemical and Biophysical Research Communications, 1970