Inhibition by 2‐Deoxyglucose and 1,5‐Gluconolactone of Glycogen Mobilization in Astroglia‐Rich Primary Cultures
- 1 April 1993
- journal article
- Published by Wiley in Journal of Neurochemistry
- Vol. 60 (4) , 1498-1504
- https://doi.org/10.1111/j.1471-4159.1993.tb03313.x
Abstract
The presence of glycogen in astroglia‐rich primary cultures derived from the brains of newborn rats depends on the availability of glucose in the culture medium. On glucose deprivation, glycogen vanishes from the astroglial cultures. This decrease of glycogen content is completely prevented if 2‐deoxyglucose in a concentration of > 1 mM or 1,5‐gluconolactone (20 mM) is present in the culture medium. 2‐Deoxyglucose itself or 3‐O‐methylglucose, a glucose derivative that is not phosphorylated by hexokinase, does not reduce the activity of glycogen phosphorylase purified from bovine brain or in the homogenate of astroglia‐rich rat primary cultures. In contrast, deoxyglucose‐6‐phosphate strongly inhibits the glycogen phosphorylase activities of the preparations. Half‐maximal effects were obtained at deoxyglucose‐6‐phosphate concentrations of 0.75 (phosphorylase a, astroglial culture), 5 (phosphorylase b, astroglial culture), 2 (phosphorylase a, bovine brain), or 9 mM (phosphorylase b, bovine brain). Thus, the block of glycogen degradation in these cells appears to be due to inhibition of glycogen phosphorylase by deoxyglucose‐6‐phosphate rather than deoxyglucose itself. These results suggest that glucose‐6‐phosphate, rather than glucose, acts as a physiological negative feedback regulator of the brain isoenzyme of phosphorylase and thus of glycogen degradation in astrocytes.Keywords
This publication has 30 references indexed in Scilit:
- Subsite mapping of Hormoconis resinae glucoamylases and their inhibition by gluconolactoneJournal of General Microbiology, 1991
- Regulation of Glycogen Content in Primary Astrocyte Culture: Effects of Glucose Analogues, Phenobarbital, and Methionine SulfoximineJournal of Neurochemistry, 1989
- K-252 compounds, novel and potent inhibitors of protein kinase C and cyclic nucleotide-dependent protein kinasesBiochemical and Biophysical Research Communications, 1986
- Structural Relationships in Glycogen PhosphorylasesaAnnals of the New York Academy of Sciences, 1986
- Cytochemical identification of cerebral glycogen and glucose‐6‐phosphatase activity under normal and experimental conditions: I. Neurons and gliaJournal of Electron Microscopy Technique, 1986
- Glucose Transport in Astrocytes: Regulation by Thyroid HormoneJournal of Neurochemistry, 1985
- Determinants of Deoxyglucose Uptake in Cultured Astrocytes: The Role of the Sodium PumpJournal of Neurochemistry, 1985
- Regulation of Glycogen Metabolism in Primary and Transformed Astrocytes In VitroJournal of Neurochemistry, 1983
- Phosphorylation but not transport of sugars is enhanced in virus-transformed mouse 3T3 cellsJournal of Cellular Physiology, 1975
- Isotopic effects and inhibition of polysaccharide phosphorylase by 1,5-gluconolactone. Relation to the catalytic mechanismBiochemistry, 1971