The GhsrQ343X allele favors the storage of fat by acting on nutrient partitioning

Author:

Marion Candice1,Zizzari Philippe2,Denis Raphael G P3ORCID,Hassouna Rim3,Chebani Yacine4ORCID,Leste-Lasserre Thierry2,Doat Hélène2,Le Pen Gwenaëlle4,Cota Daniela2,Noble Florence1,Luquet Serge3,Pantel Jacques1ORCID

Affiliation:

1. 1Université de Paris, INSERM UMR S-1124, CNRS ERL3649, Paris, France

2. 2Université de Bordeaux, Neurocentre Magendie, INSERM U1215, Bordeaux, France

3. 3Université de Paris, BFA, UMR 8251, CNRS, Paris, France

4. 4Université de Paris, Institute of Psychiatry and Neuroscience of Paris (IPNP), INSERM U1266, Laboratoire de Physiopathologie des Maladies Psychiatriques, Paris, France

Abstract

The growth hormone secretagogue receptor (GHSR) mediates key properties of the gut hormone ghrelin on metabolism and behavior. Nevertheless, most recent observations also support that the GHSR is a constitutively active G protein-coupled receptor (GPCR) endowed with a sophisticated tuning involving a balance of endogenous ligands. Demonstrating the feasibility of shifting GHSR canonical signaling in vivo, we previously reported that a model with enhanced sensitivity to ghrelin (GhsrQ343X mutant rats) developed fat accumulation and glucose intolerance. Herein, we investigated the contribution of energy homeostasis to the onset of this phenotype, as well as behavioral responses to feeding or pharmacological challenges, by comparing GhsrM/M rats to WT littermate rats: (1) as freely behaving animals and (2) in feeding and locomotor paradigms. Herein, GhsrM/M rats showed enhanced locomotor response to a GHSR agonist while locomotor or anorexigenic responses to amphetamine or cabergoline (dopamine receptor 2 agonist), respectively, were preserved. Ad libitum fedGhsrM/M rats consumed and conditioned for sucrose similarly to littermate control rats . In calorie-restricted conditions, GhsrM/M rats retained food anticipatory activity and maintained better body weight and glycemia. Importantly, prior to fat accumulation, male GhsrM/M rats preferentially used carbohydrates as fuel substrate without alterations of energy intake, energy expenditure or physical activity and showed alterations of the GHSR system (i.e. enhanced ratio of GHSR hormones LEAP2: acyl-ghrelin and increased Ghsr expression in the hypothalamus). Overall, the present study provides proof for the concept that shifted GHSR signaling can specifically alter nutrient partitioning resulting in modified balance of carbohydrate/lipid utilization.

Publisher

Bioscientifica

Subject

Endocrinology,Endocrinology, Diabetes and Metabolism

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