The Role of Liver Fructose-1,6-Bisphosphatase in Regulating Appetite and Adiposity
The Role of Liver Fructose-1,6-Bisphosphatase in Regulating Appetite and Adiposity
Liver fructose-1,6-bisphosphatase (FBPase) is a regulatory enzyme in gluconeogenesis that is elevated by obesity and dietary fat intake. Whether FBPase functions only to regulate glucose or has other metabolic consequences is not clear; therefore, the aim of this study was to determine the importance of liver FBPase in body weight regulation. To this end we performed comprehensive physiologic and biochemical assessments of energy balance in liver-specific transgenic FBPase mice and negative control littermates of both sexes. In addition, hepatic branch vagotomies and pharmacologic inhibition studies were performed to confirm the role of FBPase. Compared with negative littermates, liver-specific FBPase transgenic mice had 50% less adiposity and ate 15% less food but did not have altered energy expenditure. The reduced food consumption was associated with increased circulating leptin and cholecystokinin, elevated fatty acid oxidation, and 3-β-hydroxybutyrate ketone levels, and reduced appetite-stimulating neuropeptides, neuropeptide Y and Agouti-related peptide. Hepatic branch vagotomy and direct pharmacologic inhibition of FBPase in transgenic mice both returned food intake and body weight to the negative littermates. This is the first study to identify liver FBPase as a previously unknown regulator of appetite and adiposity and describes a novel process by which the liver participates in body weight regulation.
- University of Queensland Australia
- University of Melbourne Australia
- Monash University Australia
- University of Queensland Australia
- Austin Health Australia
Leptin, Male, 570, Hepatic Glucose-Production, 610, Appetite, Hydroxybutyrates, Selective Inhibitor, Mice, Transgenic, Ketone Bodies, 630, Eating, Mice, Food-Intake, Benzoxazole Benzenesulfonamides, Animals, Humans, Agouti-Related Protein, Adiposity, Fos-Like Immunoreactivity, Dose-Response Relationship, Drug, Insulin-Resistance, Zealand Obese Mouse, Fatty Acids, Allosteric Inhibitors, Impaired Regulation, Fructose-Bisphosphatase, Gene Expression Regulation, Liver, Fructose 1,6-Bisphosphatase, Female, Cholecystokinin, Energy Metabolism, Obesity Studies
Leptin, Male, 570, Hepatic Glucose-Production, 610, Appetite, Hydroxybutyrates, Selective Inhibitor, Mice, Transgenic, Ketone Bodies, 630, Eating, Mice, Food-Intake, Benzoxazole Benzenesulfonamides, Animals, Humans, Agouti-Related Protein, Adiposity, Fos-Like Immunoreactivity, Dose-Response Relationship, Drug, Insulin-Resistance, Zealand Obese Mouse, Fatty Acids, Allosteric Inhibitors, Impaired Regulation, Fructose-Bisphosphatase, Gene Expression Regulation, Liver, Fructose 1,6-Bisphosphatase, Female, Cholecystokinin, Energy Metabolism, Obesity Studies
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