Peroxisome proliferator–activated receptor α mediates the adaptive response to fasting
- 1 June 1999
- journal article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 103 (11) , 1489-1498
- https://doi.org/10.1172/jci6223
Abstract
Prolonged deprivation of food induces dramatic changes in mammalian metabolism, including the release of large amounts of fatty acids from the adipose tissue, followed by their oxidation in the liver. The nuclear receptor known as peroxisome proliferator–activated receptor α (PPARα) was found to play a role in regulating mitochondrial and peroxisomal fatty acid oxidation, suggesting that PPARα may be involved in the transcriptional response to fasting. To investigate this possibility, PPARα-null mice were subjected to a high fat diet or to fasting, and their responses were compared with those of wild-type mice. PPARα-null mice chronically fed a high fat diet showed a massive accumulation of lipid in their livers. A similar phenotype was noted in PPARα-null mice fasted for 24 hours, who also displayed severe hypoglycemia, hypoketonemia, hypothermia, and elevated plasma free fatty acid levels, indicating a dramatic inhibition of fatty acid uptake and oxidation. It is shown that to accommodate the increased requirement for hepatic fatty acid oxidation, PPARα mRNA is induced during fasting in wild-type mice. The data indicate that PPARα plays a pivotal role in the management of energy stores during fasting. By modulating gene expression, PPARα stimulates hepatic fatty acid oxidation to supply substrates that can be metabolized by other tissues.Keywords
This publication has 51 references indexed in Scilit:
- A gender-related defect in lipid metabolism and glucose homeostasis in peroxisome proliferator- activated receptor alpha- deficient mice.Journal of Clinical Investigation, 1998
- Oxidized LDL Regulates Macrophage Gene Expression through Ligand Activation of PPARγCell, 1998
- 4.P.263 Coordinate regulation of the expression of the fatty acid transporter protein (FATP) and acyl CoA synthetase (ACS) genes by PPARα and PPARγ activatorsAtherosclerosis, 1997
- Kupffer Cells Are a Dominant Site of Uncoupling Protein 2 Expression in Rat LiverBiochemical and Biophysical Research Communications, 1997
- The Mitochondrial Carnitine Palmitoyltransferase System — From Concept to Molecular AnalysisEuropean Journal of Biochemistry, 1997
- Stimulation of adipogenesis in fibroblasts by PPARγ2, a lipid-activated transcription factorCell, 1994
- Mechanisms of regulation of liver fatty acid-binding proteinMolecular and Cellular Biochemistry, 1993
- Ultrasonographic assessment of the extent of hepatic steatosis in severe malnutrition.Archives of Disease in Childhood, 1992
- The role of the liver in metabolic homeostasis: Implications for inborn errors of metabolismJournal of Inherited Metabolic Disease, 1991
- Biological Markers of Dietary Intake, with Emphasis on Fatty AcidsAnnals of Nutrition and Metabolism, 1991