Please use this identifier to cite or link to this item:
http://hdl.handle.net/10668/2431
Title: | The cannabinoid CB1 receptor and mTORC1 signalling pathways interact to modulate glucose homeostasis in mice. |
Authors: | Bermudez-Silva, Francisco J Romero-Zerbo, Silvana Y Haissaguerre, Magalie Ruz-Maldonado, Inmaculada Lhamyani, Said El Bekay, Rajaa Tabarin, Antoine Marsicano, Giovanni Cota, Daniela |
metadata.dc.contributor.authoraffiliation: | [Bermudez-Silva,FJ; Romero-Zerbo,SY; Ruiz-Maldonado,I; Lhamyani,S; El Bekay,R] Unidad de Gestion Clınica Intercentros de Endocrinología y Nutrición, Instituto de Investigación Biomédica de Málaga (IBIMA), Hospital Regional Universitario de Málaga/Universidad de Málaga, Málaga, Spain. [Bermudez-Silva,FJ; Romero-Zerbo,SY; Ruiz-Maldonado,I] Centro de Investigación Biomédica en Red de Diabetes y Enfermedades Metabólicas Asociadas (CIBERDEM), Málaga, Spain. [Bermudez-Silva,FJ; Haissaguerre,M; Tabarin,A; Marsicano,G; Cota,D] INSERM, Neurocentre Magendie, Physiopathologie de la PlasticitéNeuronale, Bordeaux F-, France. [Bermudez-Silva,FJ; Haissaguerre,M; Tabarin,A; Marsicano,G; Cota,D] Universitéde Bordeaux, Neurocentre Magendie, Physiopathologie de la Plasticité Neuronale, Bordeaux, France. [Tabarin,A] Service d’endocrinologie, diabétologie, maladies métaboliques et nutrition, Hôpital Haut-Lévêque, Pessac, France. |
Keywords: | Cannabinoids;Insulin secrection;Rapamycin;Rimonabant;Islets;CB1;S6K1;Animales;Inmunotransferencia Western;Peso corporal;Endocannabinoides;Glucosa;Intolerancia a la glucosa;Homeostasis;Resistencia a la insulina;Células secretoras de insulina;Insulinas;Islotes pancreáticos;Ratones;Complejos multiproteicos;Fosforilación;Piperidinas;Pirazoles;Receptor cannabinoide CB1;Proteína S6 ribosómica;Sirolimus;TOR serina-treonina cinasas |
metadata.dc.subject.mesh: | Medical Subject Headings::Organisms::Eukaryota::Animals Medical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Chemistry Techniques, Analytical::Electrophoresis::Blotting, Western Medical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Investigative Techniques::Anthropometry::Body Weights and Measures::Body Size::Body Weight Medical Subject Headings::Chemicals and Drugs::Chemical Actions and Uses::Pharmacologic Actions::Physiological Effects of Drugs::Hormones, Hormone Substitutes, and Hormone Antagonists::Hormones::Endocannabinoids Medical Subject Headings::Chemicals and Drugs::Carbohydrates::Monosaccharides::Hexoses::Glucose Medical Subject Headings::Diseases::Nutritional and Metabolic Diseases::Metabolic Diseases::Glucose Metabolism Disorders::Hyperglycemia::Glucose Intolerance Medical Subject Headings::Phenomena and Processes::Physiological Phenomena::Physiological Processes::Homeostasis Medical Subject Headings::Phenomena and Processes::Physiological Phenomena::Pharmacological Phenomena::Drug Resistance::Insulin Resistance Medical Subject Headings::Anatomy::Cells::Endocrine Cells::Enteroendocrine Cells::Insulin-Secreting Cells Medical Subject Headings::Chemicals and Drugs::Hormones, Hormone Substitutes, and Hormone Antagonists::Hormones::Peptide Hormones::Pancreatic Hormones::Insulins Medical Subject Headings::Anatomy::Endocrine System::Endocrine Glands Medical Subject Headings::Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Rodentia::Muridae::Murinae::Mice Medical Subject Headings::Chemicals and Drugs::Macromolecular Substances::Multiprotein Complexes Medical Subject Headings::Phenomena and Processes::Metabolic Phenomena::Metabolism::Phosphorylation Medical Subject Headings::Chemicals and Drugs::Heterocyclic Compounds::Heterocyclic Compounds, 1-Ring::Piperidines Medical Subject Headings::Chemicals and Drugs::Heterocyclic Compounds::Heterocyclic Compounds, 1-Ring::Azoles::Pyrazoles Medical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Membrane Proteins::Receptors, Cell Surface::Receptors, G-Protein-Coupled::Receptors, Cannabinoid::Receptor, Cannabinoid, CB1 Medical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Ribosomal Proteins::Ribosomal Protein S6 Medical Subject Headings::Chemicals and Drugs::Organic Chemicals::Lactones::Macrolides::Sirolimus Medical Subject Headings::Chemicals and Drugs::Amino Acids, Peptides, and Proteins::Proteins::Intracellular Signaling Peptides and Proteins::TOR Serine-Threonine Kinases |
Issue Date: | Jan-2016 |
Publisher: | The Company of Biologists |
Citation: | Bermudez-Silva FJ, Romero-Zerbo SY, Haissaguerre M, Ruz-Maldonado I, Lhamyani S, El Bekay R, et al. The cannabinoid CB1 receptor and mTORC1 signalling pathways interact to modulate glucose homeostasis in mice. Dis Model Mech. 2016; 9(1):51-61 |
Abstract: | The endocannabinoid system (ECS) is an intercellular signalling mechanism that is present in the islets of Langerhans and plays a role in the modulation of insulin secretion and expansion of the β-cell mass. The downstream signalling pathways mediating these effects are poorly understood. Mammalian target of rapamycin complex 1 (mTORC1) signalling is a key intracellular pathway involved in energy homeostasis and is known to importantly affect the physiology of pancreatic islets. We investigated the possible relationship between cannabinoid type 1 (CB1) receptor signalling and the mTORC1 pathway in the endocrine pancreas of mice by using pharmacological analysis as well as mice genetically lacking the CB1 receptor or the downstream target of mTORC1, the kinase p70S6K1. In vitro static secretion experiments on islets, western blotting, and in vivo glucose and insulin tolerance tests were performed. The CB1 receptor antagonist rimonabant decreased glucose-stimulated insulin secretion (GSIS) at 0.1 µM while increasing phosphorylation of p70S6K1 and ribosomal protein S6 (rpS6) within the islets. Specific pharmacological blockade of mTORC1 by 3 nM rapamycin, as well as genetic deletion of p70S6K1, impaired the CB1-antagonist-mediated decrease in GSIS. In vivo experiments showed that 3 mg/kg body weight rimonabant decreased insulin levels and induced glucose intolerance in lean mice without altering peripheral insulin sensitivity; this effect was prevented by peripheral administration of low doses of rapamycin (0.1 mg/kg body weight), which increased insulin sensitivity. These findings suggest a functional interaction between the ECS and the mTORC1 pathway within the endocrine pancreas and at the whole-organism level, which could have implications for the development of new therapeutic approaches for pancreatic β-cell diseases. |
Description: | Journal Article; Research Support, Non-U.S. Gov't; |
URI: | http://hdl.handle.net/10668/2431 |
metadata.dc.relation.publisherversion: | http://dmm.biologists.org/content/9/1/51.long#abstract-1 |
metadata.dc.identifier.doi: | 10.1242/dmm.020750 |
ISSN: | 1754-8411 (Online) 1754-8403 (Print) |
Appears in Collections: | 01- Artículos - Hospital Regional de Málaga 01- Artículos - IBIMA. Instituto de Investigación Biomédica de Málaga |
Files in This Item:
File | Description | Size | Format | |
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BermudezSilvaFJ_TheCannabinoidCBI.pdf | Artículo publicado | 957,77 kB | Adobe PDF | View/Open |
BermudezSilvaFJ_TheCannabinoidCBI_Supplementary.pdf | Supplementary Material | 317,18 kB | Adobe PDF | View/Open |
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