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The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice

OBJECTIVE: Glucose production in the blood requires the expression of glucose-6 phosphatase (G6Pase), a key enzyme that allows glucose-6 phosphate (G6P) hydrolysis into free glucose and inorganic phosphate. We previously reported that the hepatic suppression of G6Pase leads to G6P accumulation and t...

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Autores principales: Rajas, Fabienne, Dentin, Renaud, Cannella Miliano, Alexane, Silva, Marine, Raffin, Margaux, Levavasseur, Françoise, Gautier-Stein, Amandine, Postic, Catherine, Mithieux, Gilles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7691719/
https://www.ncbi.nlm.nih.gov/pubmed/33137488
http://dx.doi.org/10.1016/j.molmet.2020.101108
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author Rajas, Fabienne
Dentin, Renaud
Cannella Miliano, Alexane
Silva, Marine
Raffin, Margaux
Levavasseur, Françoise
Gautier-Stein, Amandine
Postic, Catherine
Mithieux, Gilles
author_facet Rajas, Fabienne
Dentin, Renaud
Cannella Miliano, Alexane
Silva, Marine
Raffin, Margaux
Levavasseur, Françoise
Gautier-Stein, Amandine
Postic, Catherine
Mithieux, Gilles
author_sort Rajas, Fabienne
collection PubMed
description OBJECTIVE: Glucose production in the blood requires the expression of glucose-6 phosphatase (G6Pase), a key enzyme that allows glucose-6 phosphate (G6P) hydrolysis into free glucose and inorganic phosphate. We previously reported that the hepatic suppression of G6Pase leads to G6P accumulation and to metabolic reprogramming in hepatocytes from liver G6Pase-deficient mice (L.G6pc(−/−)). Interestingly, the activity of the transcription factor carbohydrate response element-binding protein (ChREBP), central for de novo lipid synthesis, is markedly activated in L.G6pc(−/−) mice, which consequently rapidly develop NAFLD-like pathology. In the current work, we assessed whether a selective deletion of ChREBP could prevent hepatic lipid accumulation and NAFLD initiation in L.G6pc(−/−) mice. METHODS: We generated liver-specific ChREBP (L.Chrebp(−/−))- and/or G6Pase (L.G6pc(−/−))-deficient mice using a Cre-lox strategy in B6.SA(CreERT2) mice. Mice were fed a standard chow diet or a high-fat diet for 10 days. Markers of hepatic metabolism and cellular stress were analysed in the liver of control, L. G6pc(−/−), L. Chrebp(−/−) and double knockout (i.e., L.G6pc(−/−).Chrebp(−/−)) mice. RESULTS: We observed that there was a dramatic decrease in lipid accumulation in the liver of L.G6pc(−/−).Chrebp(−/−) mice. At the mechanistic level, elevated G6P concentrations caused by lack of G6Pase are rerouted towards glycogen synthesis. Importantly, this exacerbated glycogen accumulation, leading to hepatic water retention and aggravated hepatomegaly. This caused animal distress and hepatocyte damage, characterised by ballooning and moderate fibrosis, paralleled with acute endoplasmic reticulum stress. CONCLUSIONS: Our study reveals the crucial role of the ChREBP-G6Pase duo in the regulation of G6P-regulated pathways in the liver.
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spelling pubmed-76917192020-12-07 The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice Rajas, Fabienne Dentin, Renaud Cannella Miliano, Alexane Silva, Marine Raffin, Margaux Levavasseur, Françoise Gautier-Stein, Amandine Postic, Catherine Mithieux, Gilles Mol Metab Original Article OBJECTIVE: Glucose production in the blood requires the expression of glucose-6 phosphatase (G6Pase), a key enzyme that allows glucose-6 phosphate (G6P) hydrolysis into free glucose and inorganic phosphate. We previously reported that the hepatic suppression of G6Pase leads to G6P accumulation and to metabolic reprogramming in hepatocytes from liver G6Pase-deficient mice (L.G6pc(−/−)). Interestingly, the activity of the transcription factor carbohydrate response element-binding protein (ChREBP), central for de novo lipid synthesis, is markedly activated in L.G6pc(−/−) mice, which consequently rapidly develop NAFLD-like pathology. In the current work, we assessed whether a selective deletion of ChREBP could prevent hepatic lipid accumulation and NAFLD initiation in L.G6pc(−/−) mice. METHODS: We generated liver-specific ChREBP (L.Chrebp(−/−))- and/or G6Pase (L.G6pc(−/−))-deficient mice using a Cre-lox strategy in B6.SA(CreERT2) mice. Mice were fed a standard chow diet or a high-fat diet for 10 days. Markers of hepatic metabolism and cellular stress were analysed in the liver of control, L. G6pc(−/−), L. Chrebp(−/−) and double knockout (i.e., L.G6pc(−/−).Chrebp(−/−)) mice. RESULTS: We observed that there was a dramatic decrease in lipid accumulation in the liver of L.G6pc(−/−).Chrebp(−/−) mice. At the mechanistic level, elevated G6P concentrations caused by lack of G6Pase are rerouted towards glycogen synthesis. Importantly, this exacerbated glycogen accumulation, leading to hepatic water retention and aggravated hepatomegaly. This caused animal distress and hepatocyte damage, characterised by ballooning and moderate fibrosis, paralleled with acute endoplasmic reticulum stress. CONCLUSIONS: Our study reveals the crucial role of the ChREBP-G6Pase duo in the regulation of G6P-regulated pathways in the liver. Elsevier 2020-10-31 /pmc/articles/PMC7691719/ /pubmed/33137488 http://dx.doi.org/10.1016/j.molmet.2020.101108 Text en © 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Rajas, Fabienne
Dentin, Renaud
Cannella Miliano, Alexane
Silva, Marine
Raffin, Margaux
Levavasseur, Françoise
Gautier-Stein, Amandine
Postic, Catherine
Mithieux, Gilles
The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice
title The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice
title_full The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice
title_fullStr The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice
title_full_unstemmed The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice
title_short The absence of hepatic glucose-6 phosphatase/ChREBP couple is incompatible with survival in mice
title_sort absence of hepatic glucose-6 phosphatase/chrebp couple is incompatible with survival in mice
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7691719/
https://www.ncbi.nlm.nih.gov/pubmed/33137488
http://dx.doi.org/10.1016/j.molmet.2020.101108
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