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Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis

The tumor suppressor p53 is involved in the adaptation of hepatic metabolism to nutrient availability. Acute deletion of p53 in the mouse liver affects hepatic glucose and triglyceride metabolism. However, long-term adaptations upon the loss of hepatic p53 and its transcriptional regulators are unkn...

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Autores principales: Oster, Moritz, Galhuber, Markus, Krstic, Jelena, Steinhoff, Julia S., Lenihan-Geels, Georgia, Wulff, Sascha, Kiefer, Marie F., Petricek, Konstantin M., Wowro, Sylvia J., Flores, Roberto E., Yang, Na, Li, Chen, Meng, Yueming, Reinisch, Isabel, Sommerfeld, Manuela, Weger, Stefan, Habisch, Hansjörg, Madl, Tobias, Schulz, Tim J., Prokesch, Andreas, Schupp, Michael
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/PMC9399478/
https://www.ncbi.nlm.nih.gov/pubmed/35868560
http://dx.doi.org/10.1016/j.jbc.2022.102287
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author Oster, Moritz
Galhuber, Markus
Krstic, Jelena
Steinhoff, Julia S.
Lenihan-Geels, Georgia
Wulff, Sascha
Kiefer, Marie F.
Petricek, Konstantin M.
Wowro, Sylvia J.
Flores, Roberto E.
Yang, Na
Li, Chen
Meng, Yueming
Reinisch, Isabel
Sommerfeld, Manuela
Weger, Stefan
Habisch, Hansjörg
Madl, Tobias
Schulz, Tim J.
Prokesch, Andreas
Schupp, Michael
author_facet Oster, Moritz
Galhuber, Markus
Krstic, Jelena
Steinhoff, Julia S.
Lenihan-Geels, Georgia
Wulff, Sascha
Kiefer, Marie F.
Petricek, Konstantin M.
Wowro, Sylvia J.
Flores, Roberto E.
Yang, Na
Li, Chen
Meng, Yueming
Reinisch, Isabel
Sommerfeld, Manuela
Weger, Stefan
Habisch, Hansjörg
Madl, Tobias
Schulz, Tim J.
Prokesch, Andreas
Schupp, Michael
author_sort Oster, Moritz
collection PubMed
description The tumor suppressor p53 is involved in the adaptation of hepatic metabolism to nutrient availability. Acute deletion of p53 in the mouse liver affects hepatic glucose and triglyceride metabolism. However, long-term adaptations upon the loss of hepatic p53 and its transcriptional regulators are unknown. Here we show that short-term, but not chronic, liver-specific deletion of p53 in mice reduces liver glycogen levels, and we implicate the transcription factor forkhead box O1 protein (FOXO1) in the regulation of p53 and its target genes. We demonstrate that acute p53 deletion prevents glycogen accumulation upon refeeding, whereas a chronic loss of p53 associates with a compensational activation of the glycogen synthesis pathway. Moreover, we identify fasting-activated FOXO1 as a repressor of p53 transcription in hepatocytes. We show that this repression is relieved by inactivation of FOXO1 by insulin, which likely mediates the upregulation of p53 expression upon refeeding. Strikingly, we find that high-fat diet–induced insulin resistance with persistent FOXO1 activation not only blunted the regulation of p53 but also the induction of p53 target genes like p21 during fasting, indicating overlapping effects of both FOXO1 and p53 on target gene expression in a context-dependent manner. Thus, we conclude that p53 acutely controls glycogen storage in the liver and is linked to insulin signaling via FOXO1, which has important implications for our understanding of the hepatic adaptation to nutrient availability.
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spelling pubmed-93994782022-08-25 Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis Oster, Moritz Galhuber, Markus Krstic, Jelena Steinhoff, Julia S. Lenihan-Geels, Georgia Wulff, Sascha Kiefer, Marie F. Petricek, Konstantin M. Wowro, Sylvia J. Flores, Roberto E. Yang, Na Li, Chen Meng, Yueming Reinisch, Isabel Sommerfeld, Manuela Weger, Stefan Habisch, Hansjörg Madl, Tobias Schulz, Tim J. Prokesch, Andreas Schupp, Michael J Biol Chem Research Article The tumor suppressor p53 is involved in the adaptation of hepatic metabolism to nutrient availability. Acute deletion of p53 in the mouse liver affects hepatic glucose and triglyceride metabolism. However, long-term adaptations upon the loss of hepatic p53 and its transcriptional regulators are unknown. Here we show that short-term, but not chronic, liver-specific deletion of p53 in mice reduces liver glycogen levels, and we implicate the transcription factor forkhead box O1 protein (FOXO1) in the regulation of p53 and its target genes. We demonstrate that acute p53 deletion prevents glycogen accumulation upon refeeding, whereas a chronic loss of p53 associates with a compensational activation of the glycogen synthesis pathway. Moreover, we identify fasting-activated FOXO1 as a repressor of p53 transcription in hepatocytes. We show that this repression is relieved by inactivation of FOXO1 by insulin, which likely mediates the upregulation of p53 expression upon refeeding. Strikingly, we find that high-fat diet–induced insulin resistance with persistent FOXO1 activation not only blunted the regulation of p53 but also the induction of p53 target genes like p21 during fasting, indicating overlapping effects of both FOXO1 and p53 on target gene expression in a context-dependent manner. Thus, we conclude that p53 acutely controls glycogen storage in the liver and is linked to insulin signaling via FOXO1, which has important implications for our understanding of the hepatic adaptation to nutrient availability. American Society for Biochemistry and Molecular Biology 2022-07-20 /pmc/articles/PMC9399478/ /pubmed/35868560 http://dx.doi.org/10.1016/j.jbc.2022.102287 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
Oster, Moritz
Galhuber, Markus
Krstic, Jelena
Steinhoff, Julia S.
Lenihan-Geels, Georgia
Wulff, Sascha
Kiefer, Marie F.
Petricek, Konstantin M.
Wowro, Sylvia J.
Flores, Roberto E.
Yang, Na
Li, Chen
Meng, Yueming
Reinisch, Isabel
Sommerfeld, Manuela
Weger, Stefan
Habisch, Hansjörg
Madl, Tobias
Schulz, Tim J.
Prokesch, Andreas
Schupp, Michael
Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis
title Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis
title_full Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis
title_fullStr Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis
title_full_unstemmed Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis
title_short Hepatic p53 is regulated by transcription factor FOXO1 and acutely controls glycogen homeostasis
title_sort hepatic p53 is regulated by transcription factor foxo1 and acutely controls glycogen homeostasis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9399478/
https://www.ncbi.nlm.nih.gov/pubmed/35868560
http://dx.doi.org/10.1016/j.jbc.2022.102287
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