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The mechanism of substrate inhibition of palmityl coenzyme A:carnitine palmityltransferase by palmityl coenzyme A.
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Oxidation of radioactive palmitate and glucose infused into the cortical subarachnoid space.
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Conversion of palmitate to respiratory carbon dioxide by foetal tissue of man and monkey.
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Uptake and oxidation of FFA administered by ventriculocisternal perfusion in the dog.
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Fatty acid synthetase of brain: development, influence of nutritional and hormonal factors and comparison with liver enzyme.
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Myelination in rat brain: changes in myelin composition during brain maturation.
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The estimation of rates of utilization of glucose and ketone bodies in the brain of the suckling rat using compartmental analysis of isotopic data.
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A rapid method for the preparation of relatively pure metabolically competent synaptosomes from rat brain.
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Ketone bodies are selectively used by individual brain regions.
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Lipogenesis in the brain of suckling rats. Studies on the mechansim of mitochondrial-cytosolic carbon transfer.
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The development of enzymes of energy metabolism in the brain of a precocial (guinea pig) and non-precocial (rat) species.
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Endogenous substrates utilized by rat brain in severe insulin-induced hypoglycemia.
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Characterization of water-soluble products of palmitic acid beta-oxidation by a rat brain preparation.
J Neurochem. 1981 May;36(5):1786-91
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Carnitine palmitoyltransferase and carnitine octanoyltransferase activities in liver, kidney cortex, adipocyte, lactating mammary gland, skeletal muscle and heart.
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Carnitine, carnitine acyltransferases, and rat brain function.
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Effects of thyroidectomy and starvation on the activity and properties of hepatic carnitine palmitoyltransferase.
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The effect of malonyl-CoA on overt and latent carnitine acyltransferase activities in rat liver and adipocyte mitochondria.
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The interaction of long-chain acyl CoA with membranes.
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Carnitine--metabolism and functions.
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Regional enzyme development in rat brain. Enzymes of energy metabolism.
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Binding of malonyl-CoA to isolated mitochondria. Evidence for high- and low-affinity sites in liver and heart and relationship to inhibition of carnitine palmitoyltransferase activity.
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The oxidation of uniformly labelled albumin-bound palmitic acid to CO2 by the perfused cat brain.
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