Simultaneous deletion of ghrelin and its receptor increases motor activity and energy expenditure
Open Access
- 1 March 2008
- journal article
- Published by American Physiological Society in American Journal of Physiology-Gastrointestinal and Liver Physiology
- Vol. 294 (3) , G610-G618
- https://doi.org/10.1152/ajpgi.00321.2007
Abstract
Administration of chemically synthesized ghrelin (Ghr) peptide has been shown to increase food intake and body adiposity in most species. However, the biological role of endogenous Ghr in the molecular control of energy metabolism is far less understood. Mice deficient for either Ghr or its receptor (the growth hormone secretagogue receptor, GHS-R1a) seem to exhibit enhanced protection against high-fat diet-induced obesity but do not show a substantial metabolic phenotype on a standard diet. Here we present the first mouse mutant lacking both Ghr and the Ghr receptor. We demonstrate that simultaneous genetic disruption of both genes of the Ghr system leads to an enhanced energy metabolism phenotype. Ghr/Ghr receptor double knockout (dKO) mice exhibit decreased body weight, increased energy expenditure, and increased motor activity on a standard diet without exposure to a high caloric environment. Mice on the same genetic background lacking either the Ghr or the Ghr receptor gene did not exhibit such a phenotype on standard chow, thereby confirming earlier reports. No differences in food intake, meal pattern, or lean mass were observed between dKO, Ghr-deficient, Ghr receptor-deficient, and wild-type (WT) control mice. Only dKO showed a slight decrease in body length. In summary, simultaneous deletion of Ghr and its receptor enhances the metabolic phenotype of single gene-deficient mice compared with WT mice, possibly suggesting the existence of additional, as of yet unknown, molecular components of the endogenous Ghr system.Keywords
This publication has 34 references indexed in Scilit:
- The central melanocortin system directly controls peripheral lipid metabolismJournal of Clinical Investigation, 2007
- Ghrelin modulates the activity and synaptic input organization of midbrain dopamine neurons while promoting appetiteJournal of Clinical Investigation, 2006
- Ghrelin action in the brain controls adipocyte metabolismJournal of Clinical Investigation, 2006
- Ghrelin receptor mutations -- too little height and too much hungerJournal of Clinical Investigation, 2006
- Ghrelin controls hippocampal spine synapse density and memory performanceNature Neuroscience, 2006
- Absence of ghrelin protects against early-onset obesityJournal of Clinical Investigation, 2005
- Mice lacking ghrelin receptors resist the development of diet-induced obesityJournal of Clinical Investigation, 2005
- Expression of ghrelin receptor mRNA in the rat and the mouse brainJournal of Comparative Neurology, 2005
- A Novel Growth Hormone Secretagogue-1a Receptor Antagonist That Blocks Ghrelin-Induced Growth Hormone Secretion but Induces Increased Body Weight GainNeuroendocrinology, 2005
- Deletion of Ghrelin Impairs neither Growth nor AppetiteMolecular and Cellular Biology, 2003