HEPATIC GLYCOGEN-SYNTHESIS FROM DUODENAL GLUCOSE AND ALANINE - AN INSITU C-13 NMR-STUDY
- 5 March 1989
- journal article
- research article
- Vol. 264 (7) , 3930-3934
Abstract
An in situ and in vivo surface coil 13C NMR study was performed to study hepatic glycogen synthesis from [3-13C]alanine and [1-13C]glucose administered by intraduodenal infusion in 18-h fasted male Sprague-Dawley rats. Combined, equimolar amounts of alanine and glucose were given. Hepatic appearance and disappearance of substrate and concurrent glycogen synthesis was followed over 150 min, with 5-min time resolution. Active glycogen synthesis from glucose via the direct (glucose .fwdarw. glycogen) and indirect (glucose .fwdarw. lactate .fwdarw. glycogen) pathways and from alanine via gluconeogenesis was observed. The indirect pathway of glycogen synthesis from [1-13C]glucose accounted for 30% (.+-.6 S.E.) of total glycogen formed from labeled glucose. This estimate does not take into account dilution of label in the hepatic oxaloacetate pool and is, therefore, somewhat uncertain. Hepatic levels of [3-13C]alanine achieved were significantly lower than levels of [1-13C]glucose in the liver, and the period of active glycogen synthesis from [3-13C]alanine was longer than from glucose. However, the overall pseudo first-order rate constant during the period of active glycogen synthesis from [3-13C]alanine (0.075 min-1 .+-. 0.026 S.E.) was almost 3 times that from [1-13C]glucose via the direct pathway (0.025 min-1 .+-. 0.005 S.E.). The most likely reason for the small rate constant governing direct glycogen formation from duodenally administered glucose compared to that from duodenally administered alanine is a low level of glucose phosphorylating capacity in the liver.This publication has 10 references indexed in Scilit:
- Chronic catheterization using vascular-access-port in rats: blood sampling with minimal stress for plasma catecholamine determinationJournal of Neuroscience Methods, 1987
- Dependence of hepatic gluconeogenesis on PO2: inhibitory effects of halothaneJournal of Applied Physiology, 1987
- The glucose-phosphorylating capacity of liver as measured by three independent assays. Implications for the mechanism of hepatic glycogen synthesis.Journal of Biological Chemistry, 1986
- Effects of hormone and glucose administration on hepatic glucose and glycogen metabolism in vivo. A 13C NMR study.Journal of Biological Chemistry, 1985
- Mechanism of liver glycogen repletion in vivo by nuclear magnetic resonance spectroscopy.Journal of Clinical Investigation, 1985
- Quantitative estimation of the pathways followed in the conversion to glycogen of glucose administered to the fasted rat.Journal of Biological Chemistry, 1985
- EXTERNAL AND INTERNAL STANDARDS IN THE SINGLE-ISOTOPE DERIVATIVE (RADIOENZYMATIC) MEASUREMENT OF PLASMA NOREPINEPHRINE AND EPINEPHRINE1985
- Efficient hepatic glycogen synthesis in refeeding rats requires continued carbon flow through the gluconeogenic pathway.Journal of Biological Chemistry, 1984
- Studies on the mechanism by which exogenous glucose is converted into liver glycogen in the rat. A direct or an indirect pathway?Journal of Biological Chemistry, 1983
- Glucose Penetration Into LiverAmerican Journal of Physiology-Legacy Content, 1958