13C NMR of Intermediary Metabolism: Implications for Systemic Physiology
- 1 March 2001
- journal article
- review article
- Published by Annual Reviews in Annual Review of Physiology
- Vol. 63 (1) , 15-48
- https://doi.org/10.1146/annurev.physiol.63.1.15
Abstract
▪ Abstract The study of intermediary metabolism in biomolecules has been given new directions by recent experiments in human muscle and brain by 13C NMR. Labeled substrates, generally glucose, have enabled the fluxes to be determined in vivo, whereas the naturally abundant 13C has enabled concentrations to be measured. In muscle the glycogen synthesis pathway has been measured and the flux control determined by metabolic control analysis of data, which shows that this pathway is mainly responsible for insulin-stimulated glucose disposal and that a deficiency in the glucose transporter in the pathway is responsible for hyperglycemia in non-insulin-dependent diabetics. From a physiological point of view the most surprising result was that the heavily regulated allosteric enzyme, glycogen synthase, does not control flux but is needed to maintain homeostasis during flux changes. This novel role for a phosphorylated allosteric enzyme is proposed to be a general phenomenon in metabolic and signaling pathways, which physiologically link different cellular activities. In human and rat brains 13C NMR measurements of the flow of labeled glucose into glutamate and glutamine simultaneously determine the rate of glucose oxidation and glutamate neurotransmitter cycling and reveal a 1:1 stoichiometry between the two fluxes. Implications for the interpretation of functional imaging studies and for psychology are discussed. These results demonstrate how intermediary metabolism serves to connect biochemistry with systemic physiology when measured and analyzed by in vivo NMR methods.Keywords
This publication has 65 references indexed in Scilit:
- Functional Energy Metabolism:In vivo 13C-NMR Spectroscopy Evidence for Coupling of Cerebral Glucose Consumption and Gl utamatergic Neuronal ActivityDevelopmental Neuroscience, 1998
- Localization of neuronal and glial glutamate transportersNeuron, 1994
- Direct demonstration by [13C]NMR spectroscopy that glutamine from astrocytes is a precursor for GABA synthesis in neuronsNeurochemistry International, 1993
- Quantitation of Hepatic Glycogenolysis And Gluconeogenesis in Fasting Humans With 13 C NMRScience, 1991
- Simultaneous synthesis and degradation of rat liver glycogen. An in vivo nuclear magnetic resonance spectroscopic study.Journal of Clinical Investigation, 1990
- Relative contribution of glycogen synthesis and glycolysis to insulin-mediated glucose uptake. A dose-response euglycemic clamp study in normal and diabetic rats.Journal of Clinical Investigation, 1990
- Quantitation of Muscle Glycogen Synthesis in Normal Subjects and Subjects with Non-Insulin-Dependent Diabetes by13C Nuclear Magnetic Resonance SpectroscopyNew England Journal of Medicine, 1990
- Early Metabolic Defects in Persons at Increased Risk for Non-Insulin-Dependent Diabetes MellitusNew England Journal of Medicine, 1989
- Detection of glycogen in a glycogen storage disease by 13C nuclear magnetic resonanceFEBS Letters, 1982
- Covalent phosphorylation in the regulation of glycogen synthase activityMolecular and Cellular Biochemistry, 1977