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Liver Reptin/RUVBL2 controls glucose and lipid metabolism with opposite actions on mTORC1 and mTORC2 signalling.
Javary, Joaquim; Allain-Courtois, Nathalie; Saucisse, Nicolas; Costet, Pierre; Heraud, Capucine; Benhamed, Fadila; Pierre, Rémi; Bure, Corinne; Pallares-Lupon, Nestor; Do Cruzeiro, Marcio; Postic, Catherine; Cota, Daniela; Dubus, Pierre; Rosenbaum, Jean; Benhamouche-Trouillet, Samira.
Afiliação
  • Javary J; INSERM, Bordeaux Research in Translational Oncology, Bordeaux, France.
  • Allain-Courtois N; Université de Bordeaux, Bordeaux, France.
  • Saucisse N; INSERM, Bordeaux Research in Translational Oncology, Bordeaux, France.
  • Costet P; Université de Bordeaux, Bordeaux, France.
  • Heraud C; Université de Bordeaux, Bordeaux, France.
  • Benhamed F; Physiopathologie de la Plasticité Neuronale, INSERM, Neuro Centre Magendie, Bordeaux, France.
  • Pierre R; Université de Bordeaux, Bordeaux, France.
  • Bure C; INSERM, Bordeaux Research in Translational Oncology, Bordeaux, France.
  • Pallares-Lupon N; Université de Bordeaux, Bordeaux, France.
  • Do Cruzeiro M; INSERM, Institut Cochin, Paris, France.
  • Postic C; Université Paris Descartes, Paris, France.
  • Cota D; Université Paris Descartes, Paris, France.
  • Dubus P; Plate-forme de Recombinaison Homologue, Institut Cochin, INSERM, Paris, France.
  • Rosenbaum J; Université de Bordeaux, Bordeaux, France.
  • Benhamouche-Trouillet S; UMR , Chimie et Biologie des Membranes et des Nano objets, Bordeaux, France.
Gut ; 67(12): 2192-2203, 2018 12.
Article em En | MEDLINE | ID: mdl-29074727
ABSTRACT

OBJECTIVE:

The AAA+ ATPase Reptin is overexpressed in hepatocellular carcinoma and preclinical studies indicate that it could be a relevant therapeutic target. However, its physiological and pathophysiological roles in vivo remain unknown. This study aimed to determine the role of Reptin in mammalian adult liver. DESIGN AND

RESULTS:

We generated an inducible liver-specific Reptin knockout (RepinLKO ) mouse model. Following Reptin invalidation, mice displayed decreased body and fat mass, hypoglycaemia and hypolipidaemia. This was associated with decreased hepatic mTOR protein abundance. Further experiments in primary hepatocytes demonstrated that Reptin maintains mTOR protein level through its ATPase activity. Unexpectedly, loss or inhibition of Reptin induced an opposite effect on mTORC1 and mTORC2 signalling, with (1) strong inhibition of hepatic mTORC1 activity, likely responsible for the reduction of hepatocytes cell size, for decreased de novo lipogenesis and cholesterol transcriptional programmes and (2) enhancement of mTORC2 activity associated with inhibition of the gluconeogenesis transcriptional programme and hepatic glucose production. Consequently, the role of hepatic Reptin in the pathogenesis of insulin resistance (IR) and non-alcoholic fatty liver disease consecutive to a high-fat diet was investigated. We found that Reptin deletion completely rescued pathological phenotypes associated with IR, including glucose intolerance, hyperglycaemia, hyperlipidaemia and hepatic steatosis.

CONCLUSION:

We show here that the AAA +ATPase Reptin is a regulator of mTOR signalling in the liver and global glucido-lipidic homeostasis. Inhibition of hepatic Reptin expression or activity represents a new therapeutic perspective for metabolic syndrome.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: DNA Helicases / Metabolismo dos Lipídeos / ATPases Associadas a Diversas Atividades Celulares / Glucose Tipo de estudo: Etiology_studies Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: DNA Helicases / Metabolismo dos Lipídeos / ATPases Associadas a Diversas Atividades Celulares / Glucose Tipo de estudo: Etiology_studies Limite: Animals Idioma: En Ano de publicação: 2018 Tipo de documento: Article