Cargando…

Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase

Dysregulation of liver functions leads to insulin resistance causing type 2 diabetes mellitus and is often found in chronic liver diseases. However, the mechanisms of hepatic dysfunction leading to hepatic metabolic disorder are still poorly understood in chronic liver diseases. The current work inv...

Descripción completa

Detalles Bibliográficos
Autores principales: Shin, Hye-Jun, Park, Young-Ho, Kim, Sun-Uk, Moon, Hyung-Bae, Park, Do Sim, Han, Ying-Hao, Lee, Chul-Ho, Lee, Dong-Seok, Song, In-Sung, Lee, Dae Ho, Kim, Minhye, Kim, Nam-Soon, Kim, Dae-Ghon, Kim, Jin-Man, Kim, Sang-Keun, Kim, Yo Na, Kim, Su Sung, Choi, Cheol Soo, Kim, Young-Bum, Yu, Dae-Yeul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3191028/
https://www.ncbi.nlm.nih.gov/pubmed/21690090
http://dx.doi.org/10.1074/jbc.M111.259978
_version_ 1782213613217382400
author Shin, Hye-Jun
Park, Young-Ho
Kim, Sun-Uk
Moon, Hyung-Bae
Park, Do Sim
Han, Ying-Hao
Lee, Chul-Ho
Lee, Dong-Seok
Song, In-Sung
Lee, Dae Ho
Kim, Minhye
Kim, Nam-Soon
Kim, Dae-Ghon
Kim, Jin-Man
Kim, Sang-Keun
Kim, Yo Na
Kim, Su Sung
Choi, Cheol Soo
Kim, Young-Bum
Yu, Dae-Yeul
author_facet Shin, Hye-Jun
Park, Young-Ho
Kim, Sun-Uk
Moon, Hyung-Bae
Park, Do Sim
Han, Ying-Hao
Lee, Chul-Ho
Lee, Dong-Seok
Song, In-Sung
Lee, Dae Ho
Kim, Minhye
Kim, Nam-Soon
Kim, Dae-Ghon
Kim, Jin-Man
Kim, Sang-Keun
Kim, Yo Na
Kim, Su Sung
Choi, Cheol Soo
Kim, Young-Bum
Yu, Dae-Yeul
author_sort Shin, Hye-Jun
collection PubMed
description Dysregulation of liver functions leads to insulin resistance causing type 2 diabetes mellitus and is often found in chronic liver diseases. However, the mechanisms of hepatic dysfunction leading to hepatic metabolic disorder are still poorly understood in chronic liver diseases. The current work investigated the role of hepatitis B virus X protein (HBx) in regulating glucose metabolism. We studied HBx-overexpressing (HBxTg) mice and HBxTg mice lacking inducible nitric oxide synthase (iNOS). Here we show that gene expressions of the key gluconeogenic enzymes were significantly increased in HepG2 cells expressing HBx (HepG2-HBx) and in non-tumor liver tissues of hepatitis B virus patients with high levels of HBx expression. In the liver of HBxTg mice, the expressions of gluconeogenic genes were also elevated, leading to hyperglycemia by increasing hepatic glucose production. However, this effect was insufficient to cause systemic insulin resistance. Importantly, the actions of HBx on hepatic glucose metabolism are thought to be mediated via iNOS signaling, as evidenced by the fact that deficiency of iNOS restored HBx-induced hyperglycemia by suppressing the gene expression of gluconeogenic enzymes. Treatment of HepG2-HBx cells with nitric oxide (NO) caused a significant increase in the expression of gluconeogenic genes, but JNK1 inhibition was completely normalized. Furthermore, hyperactivation of JNK1 in the liver of HBxTg mice was also suppressed in the absence of iNOS, indicating the critical role for JNK in the mutual regulation of HBx- and iNOS-mediated glucose metabolism. These findings establish a novel mechanism of HBx-driven hepatic metabolic disorder that is modulated by iNOS-mediated activation of JNK.
format Online
Article
Text
id pubmed-3191028
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-31910282011-10-19 Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase Shin, Hye-Jun Park, Young-Ho Kim, Sun-Uk Moon, Hyung-Bae Park, Do Sim Han, Ying-Hao Lee, Chul-Ho Lee, Dong-Seok Song, In-Sung Lee, Dae Ho Kim, Minhye Kim, Nam-Soon Kim, Dae-Ghon Kim, Jin-Man Kim, Sang-Keun Kim, Yo Na Kim, Su Sung Choi, Cheol Soo Kim, Young-Bum Yu, Dae-Yeul J Biol Chem Molecular Bases of Disease Dysregulation of liver functions leads to insulin resistance causing type 2 diabetes mellitus and is often found in chronic liver diseases. However, the mechanisms of hepatic dysfunction leading to hepatic metabolic disorder are still poorly understood in chronic liver diseases. The current work investigated the role of hepatitis B virus X protein (HBx) in regulating glucose metabolism. We studied HBx-overexpressing (HBxTg) mice and HBxTg mice lacking inducible nitric oxide synthase (iNOS). Here we show that gene expressions of the key gluconeogenic enzymes were significantly increased in HepG2 cells expressing HBx (HepG2-HBx) and in non-tumor liver tissues of hepatitis B virus patients with high levels of HBx expression. In the liver of HBxTg mice, the expressions of gluconeogenic genes were also elevated, leading to hyperglycemia by increasing hepatic glucose production. However, this effect was insufficient to cause systemic insulin resistance. Importantly, the actions of HBx on hepatic glucose metabolism are thought to be mediated via iNOS signaling, as evidenced by the fact that deficiency of iNOS restored HBx-induced hyperglycemia by suppressing the gene expression of gluconeogenic enzymes. Treatment of HepG2-HBx cells with nitric oxide (NO) caused a significant increase in the expression of gluconeogenic genes, but JNK1 inhibition was completely normalized. Furthermore, hyperactivation of JNK1 in the liver of HBxTg mice was also suppressed in the absence of iNOS, indicating the critical role for JNK in the mutual regulation of HBx- and iNOS-mediated glucose metabolism. These findings establish a novel mechanism of HBx-driven hepatic metabolic disorder that is modulated by iNOS-mediated activation of JNK. American Society for Biochemistry and Molecular Biology 2011-08-26 2011-06-20 /pmc/articles/PMC3191028/ /pubmed/21690090 http://dx.doi.org/10.1074/jbc.M111.259978 Text en © 2011 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Molecular Bases of Disease
Shin, Hye-Jun
Park, Young-Ho
Kim, Sun-Uk
Moon, Hyung-Bae
Park, Do Sim
Han, Ying-Hao
Lee, Chul-Ho
Lee, Dong-Seok
Song, In-Sung
Lee, Dae Ho
Kim, Minhye
Kim, Nam-Soon
Kim, Dae-Ghon
Kim, Jin-Man
Kim, Sang-Keun
Kim, Yo Na
Kim, Su Sung
Choi, Cheol Soo
Kim, Young-Bum
Yu, Dae-Yeul
Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase
title Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase
title_full Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase
title_fullStr Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase
title_full_unstemmed Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase
title_short Hepatitis B Virus X Protein Regulates Hepatic Glucose Homeostasis via Activation of Inducible Nitric Oxide Synthase
title_sort hepatitis b virus x protein regulates hepatic glucose homeostasis via activation of inducible nitric oxide synthase
topic Molecular Bases of Disease
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3191028/
https://www.ncbi.nlm.nih.gov/pubmed/21690090
http://dx.doi.org/10.1074/jbc.M111.259978
work_keys_str_mv AT shinhyejun hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT parkyoungho hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimsunuk hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT moonhyungbae hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT parkdosim hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT hanyinghao hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT leechulho hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT leedongseok hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT songinsung hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT leedaeho hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimminhye hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimnamsoon hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimdaeghon hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimjinman hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimsangkeun hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimyona hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimsusung hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT choicheolsoo hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT kimyoungbum hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase
AT yudaeyeul hepatitisbvirusxproteinregulateshepaticglucosehomeostasisviaactivationofinduciblenitricoxidesynthase