Effect of acetoacetate on glucose metabolism in the soleus and extensor digitorum longus muscles of the rat
- 15 March 1977
- journal article
- research article
- Published by Portland Press Ltd. in Biochemical Journal
- Vol. 162 (3) , 557-568
- https://doi.org/10.1042/bj1620557
Abstract
1. The effect of acetoacetate on glucose metabolism was compared in the soleus, a slow-twitch red muscle, and the extensor digitorum longus, a muscle composed of 50% fast-twitch red and 50% white fibres. 2. When incubated for 2h in a medium containing 5 mM-glucose and 0.1 unit of insulin/ml, rates of glucose uptake, lactate release and glucose oxidation in the soleus were 19.6, 18.6 and 1.47 micronmol/h per g respectively. Acetoacetate (1.7 mM) diminished all three rates by 25-50%; however, it increased glucose conversion into glycogen. In addition, it caused increases in tissue glucose, glucose 6-phosphate and fructose 6-phosphate, suggesting inhibition of phosphofructokinase. The concentrations of citrate, an inhibitor of phosphofructokinase, and of malate were also increased. 3. Rates of glucose uptake and lactate release in the extensor digitorum longus were 50-80% of those in the soleus. Acetoacetate caused moderate increases in tissue glucose 6-phosphate and possibly citrate, but it did not decrease glucose uptake or lactate release. 4. The rate of glycolysis in the soleus was approximately five times that previously observed in the perfused rat hindquarter, a muscle preparation in which acetoacetate inhibits glucose oxidation, but does not alter glucose uptake or glycolysis. A similar rate of glycolysis was observed when the soleus was incubated with a glucose-free medium. Under these conditions, tissue malate and the lactate/pyruvate ratio in the medium were decreased, and acetoacetate did not decrease lactate release or increase tissue citrate or glucose 6-phosphate. An intermediate rate of glycolysis, which was not decreased by acetoacetate, was observed when the soleus was incubated with glucose, but not insulin. 5. The data suggest that acetoacetate glucose inhibits uptake and glycolysis in red muscle under conditions that resemble mild to moderate exercise. They also suggest that the accumulation of citrate in these circumstances is linked to the rate of glycolysis, possibly through the generation of cytosolic NADH and malate formation.This publication has 46 references indexed in Scilit:
- Glucose metabolism in perfused skeletal muscle. Pyruvate dehydrogenase activity in starvation, diabetes and exerciseBiochemical Journal, 1976
- Glucose metabolism in perfused skeletal muscle. Effects of starvation, diabetes, fatty acids, acetoacetate, insulin and exercise on glucose uptake and dispositionBiochemical Journal, 1976
- Enzymes Involved in Ketone Utilization in Different Types of Muscle: Adaptation to ExerciseEuropean Journal of Biochemistry, 1974
- Glycolytic enzymes in different types of skeletal muscle: adaptation to exerciseAmerican Journal of Physiology-Legacy Content, 1973
- Mammalian Motor Units: Physiological-Histochemical Correlation in Three Types in Cat GastrocnemiusScience, 1971
- Evaluation of the isolated perfused rat hindquarter for the study of muscle metabolismBiochemical Journal, 1971
- Enzymes in MuscleArchives of Neurology, 1964
- Citrate as an Intermediary in the Inhibition of Phosphofructokinase in Rat Heart Muscle by Fatty Acids, Ketone Bodies, Pyruvate, Diabetes and StarvationNature, 1963
- STUDIES OF TISSUE PERMEABILITY .8. EFFECT OF ANAEROBIOSIS ON GLUCOSE UPTAKE IN FROG SARTORIUS MUSCLE1962
- Metabolism of acetoacetate in animal tissues. 11945