Metabolic interactions between fatty acid oxidation and gluconeogenesis were investigated in vivo in 16h-old newborn rats under various nutritional states. As the newborn rat has no white adipose tissue, starvation from birth induces a low rate of hepatic fatty acid oxidation. Hepatic gluconeogenesis in inhibited in the starved newborn rat when compared with the suckling rat, which receives fatty acids through the milk, at the steps catalysed by pyruvate carboxylase and glyceraldehyde 3-phosphate dehydrogenase. These inhibitions are rapidly reversed by triacylglycerol feeding. Inhibition of fatty acid oxidation by pent-4-enoate in the suckling animal mimics the effect of starvation on the pattern of hepatic gluconeogenic metabolites. It is concluded that, in the newborn rat in vivo, hepatic fatty acids oxidation can increase the gluconeogenic flux by providing the acetyl-CoA necessary for the reaction catalysed by pyruvate carboxylase and the reducing equivalents (NADH) to displace the reversible reaction catalysed by glyceraldehyde 3-phosphate dehydrogenase in the direction of gluconeogenesis.
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August 1979
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Research Article|
August 15 1979
Interactions in vivo between oxidation of non-esterified fatty acids and gluconeogenesis in the newborn rat
Publisher: Portland Press Ltd
Online ISSN: 1470-8728
Print ISSN: 0264-6021
© 1979 London: The Biochemical Society
1979
Biochem J (1979) 182 (2): 593–598.
Citation
P Ferré, J P Pégorier, D H Williamson, J Girard; Interactions in vivo between oxidation of non-esterified fatty acids and gluconeogenesis in the newborn rat. Biochem J 15 August 1979; 182 (2): 593–598. doi: https://doi.org/10.1042/bj1820593
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