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Molecular Mechanisms in the Regulation of Enzyme Activity
Regulation of Carbohydrate Metabolism in Muscle
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acetyl-CoA adenyl adrenaline allosteric amino acids animals Biochem biol blood glucose brain brown adipose tissue Ca2+ calculated carbohydrate catalysed cell changes Chapter Chem citrate synthase close to equilibrium conversion cyclic AMP cytoplasmic decreased dehydrogenase effect energy enzyme enzyme activity equation equilibrium constant esterification experimental fatty acid level fatty acid oxidation fatty acyl-CoA Figure flux fractional saturation fructose-6-phosphate fuel glucagon glucokinase gluconeogenesis glucose uptake glucose-6-phosphate glycerol phosphate glycogen glycogenosis glycolysis glycolytic hexokinase hydrolysis increase inhibition insulin interconvertible intermediates ketone bodies lactate lipase lipolysis liver mass-action ratio mechanism membrane metabolic pathway mitochondrial molecule muscle NAD+ NADH NEFA non-equilibrium reaction nucleotides oxaloacetate oxygen phosphatase phosphofructokinase phosphorylase phosphorylase b kinase physiological plasma fatty acid protein kinase pyruvate regulation regulatory enzyme release role Section sigmoid starvation stimulation substrate concentration substrate cycle subunits Table TCA cycle theory of control tion transport triglyceride vitro