Glucagon Receptor Signaling Regulates Energy Metabolism via Hepatic Farnesoid X Receptor and Fibroblast Growth Factor 21.
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- Record sourced from PubMed, PMID 29925501.
- Also identified by DOI 10.2337/db17-1502 and PMC identifier 6110317.
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Abstract
Glucagon, an essential regulator of glucose and lipid metabolism, also promotes weight loss, in part through potentiation of fibroblast growth factor 21 (FGF21) secretion. However, FGF21 is only a partial mediator of metabolic actions ensuing from glucagon receptor (GCGR) activation, prompting us to search for additional pathways. Intriguingly, chronic GCGR agonism increases plasma bile acid levels. We hypothesized that GCGR agonism regulates energy metabolism, at least in part, through farnesoid X receptor (FXR). To test this hypothesis, we studied whole-body and liver-specific FXR-knockout (<i>Fxr</i><sup>∆liver</sup>) mice. Chronic GCGR agonist (IUB288) administration in diet-induced obese (DIO) <i>Gcgr</i>, <i>Fgf21,</i> and <i>Fxr</i> whole-body or liver-specific knockout (<sup>∆liver</sup>) mice failed to reduce body weight when compared with wild-type (WT) mice. IUB288 increased energy expenditure and respiration in DIO WT mice, but not <i>Fxr</i><sup>∆liver</sup> mice. GCGR agonism increased [<sup>14</sup>C]palmitate oxidation in hepatocytes isolated from WT mice in a dose-dependent manner, an effect blunted in hepatocytes from <i>Fxr</i><sup>∆liver</sup> mice. Our data clearly demonstrate that control of whole-body energy expenditure by GCGR agonism requires intact FXR signaling in the liver. This heretofore-unappreciated aspect of glucagon biology has implications for the use of GCGR agonism in the therapy of metabolic disorders.
Medical subject headings
- Anti-Obesity Agents
- Energy Metabolism
- Fibroblast Growth Factors
- Liver
- Obesity
- Receptors, Cytoplasmic and Nuclear
- Receptors, Glucagon