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Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage

The primary hepatic consequence of obesity is non-alcoholic fatty liver disease (NAFLD), affecting about 25% of the global adult population. Non-alcoholic steatohepatitis (NASH) is a severe form of NAFLD characterized by liver lipid accumulation, inflammation, and hepatocyte ballooning, with a diffe...

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Autores principales: Anand, Sumit Kumar, Caputo, Mara, Xia, Ying, Andersson, Emma, Cansby, Emmelie, Kumari, Sima, Henricsson, Marcus, Porosk, Rando, Keuenhof, Katharina Susanne, Höög, Johanna Louise, Nair, Syam, Marschall, Hanns-Ulrich, Blüher, Matthias, Mahlapuu, Margit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9293639/
https://www.ncbi.nlm.nih.gov/pubmed/35679904
http://dx.doi.org/10.1016/j.jlr.2022.100238
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author Anand, Sumit Kumar
Caputo, Mara
Xia, Ying
Andersson, Emma
Cansby, Emmelie
Kumari, Sima
Henricsson, Marcus
Porosk, Rando
Keuenhof, Katharina Susanne
Höög, Johanna Louise
Nair, Syam
Marschall, Hanns-Ulrich
Blüher, Matthias
Mahlapuu, Margit
author_facet Anand, Sumit Kumar
Caputo, Mara
Xia, Ying
Andersson, Emma
Cansby, Emmelie
Kumari, Sima
Henricsson, Marcus
Porosk, Rando
Keuenhof, Katharina Susanne
Höög, Johanna Louise
Nair, Syam
Marschall, Hanns-Ulrich
Blüher, Matthias
Mahlapuu, Margit
author_sort Anand, Sumit Kumar
collection PubMed
description The primary hepatic consequence of obesity is non-alcoholic fatty liver disease (NAFLD), affecting about 25% of the global adult population. Non-alcoholic steatohepatitis (NASH) is a severe form of NAFLD characterized by liver lipid accumulation, inflammation, and hepatocyte ballooning, with a different degree of hepatic fibrosis. In the light of rapidly increasing prevalence of NAFLD and NASH, there is an urgent need for improved understanding of the molecular pathogenesis of these diseases. The aim of this study was to decipher the possible role of STE20-type kinase MAP4K4 in the regulation of hepatocellular lipotoxicity and susceptibility to NAFLD. We found that MAP4K4 mRNA expression in human liver biopsies was positively correlated with key hallmarks of NAFLD (i.e., liver steatosis, lobular inflammation, hepatocellular ballooning, and fibrosis). We also found that the silencing of MAP4K4 suppressed lipid deposition in human hepatocytes by stimulating β-oxidation and triacylglycerol secretion, while attenuating fatty acid influx and lipid synthesis. Furthermore, downregulation of MAP4K4 markedly reduced the glycolysis rate and lowered incidences of oxidative/endoplasmic reticulum stress. In parallel, we observed suppressed JNK and ERK and increased AKT phosphorylation in MAP4K4-deficient hepatocytes. Together, these results provide the first experimental evidence supporting the potential involvement of STE20-type kinase MAP4K4 as a component of the hepatocellular lipotoxic milieu promoting NAFLD susceptibility.
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spelling pubmed-92936392022-07-20 Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage Anand, Sumit Kumar Caputo, Mara Xia, Ying Andersson, Emma Cansby, Emmelie Kumari, Sima Henricsson, Marcus Porosk, Rando Keuenhof, Katharina Susanne Höög, Johanna Louise Nair, Syam Marschall, Hanns-Ulrich Blüher, Matthias Mahlapuu, Margit J Lipid Res Research Article The primary hepatic consequence of obesity is non-alcoholic fatty liver disease (NAFLD), affecting about 25% of the global adult population. Non-alcoholic steatohepatitis (NASH) is a severe form of NAFLD characterized by liver lipid accumulation, inflammation, and hepatocyte ballooning, with a different degree of hepatic fibrosis. In the light of rapidly increasing prevalence of NAFLD and NASH, there is an urgent need for improved understanding of the molecular pathogenesis of these diseases. The aim of this study was to decipher the possible role of STE20-type kinase MAP4K4 in the regulation of hepatocellular lipotoxicity and susceptibility to NAFLD. We found that MAP4K4 mRNA expression in human liver biopsies was positively correlated with key hallmarks of NAFLD (i.e., liver steatosis, lobular inflammation, hepatocellular ballooning, and fibrosis). We also found that the silencing of MAP4K4 suppressed lipid deposition in human hepatocytes by stimulating β-oxidation and triacylglycerol secretion, while attenuating fatty acid influx and lipid synthesis. Furthermore, downregulation of MAP4K4 markedly reduced the glycolysis rate and lowered incidences of oxidative/endoplasmic reticulum stress. In parallel, we observed suppressed JNK and ERK and increased AKT phosphorylation in MAP4K4-deficient hepatocytes. Together, these results provide the first experimental evidence supporting the potential involvement of STE20-type kinase MAP4K4 as a component of the hepatocellular lipotoxic milieu promoting NAFLD susceptibility. American Society for Biochemistry and Molecular Biology 2022-06-06 /pmc/articles/PMC9293639/ /pubmed/35679904 http://dx.doi.org/10.1016/j.jlr.2022.100238 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Anand, Sumit Kumar
Caputo, Mara
Xia, Ying
Andersson, Emma
Cansby, Emmelie
Kumari, Sima
Henricsson, Marcus
Porosk, Rando
Keuenhof, Katharina Susanne
Höög, Johanna Louise
Nair, Syam
Marschall, Hanns-Ulrich
Blüher, Matthias
Mahlapuu, Margit
Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage
title Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage
title_full Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage
title_fullStr Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage
title_full_unstemmed Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage
title_short Inhibition of MAP4K4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage
title_sort inhibition of map4k4 signaling initiates metabolic reprogramming to protect hepatocytes from lipotoxic damage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9293639/
https://www.ncbi.nlm.nih.gov/pubmed/35679904
http://dx.doi.org/10.1016/j.jlr.2022.100238
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