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Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis

BACKGROUND: Hepatocellular carcinoma (HCC) is the most prevalent primary liver cancer, accounting for 80–90% of cases. Mutations are commonly found in the signaling regulating the PI3K/Akt pathway, leading to oncogenic cell proliferation and survival. Key transcription factors that are negatively re...

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Autores principales: Lu, Miao, Hartmann, Daniel, Braren, Rickmer, Gupta, Aayush, Wang, Baocai, Wang, Yang, Mogler, Carolin, Cheng, Zhangjun, Wirth, Thomas, Friess, Helmut, Kleeff, Jörg, Hüser, Norbert, Sunami, Yoshiaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6728971/
https://www.ncbi.nlm.nih.gov/pubmed/31488102
http://dx.doi.org/10.1186/s12885-019-6110-6
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author Lu, Miao
Hartmann, Daniel
Braren, Rickmer
Gupta, Aayush
Wang, Baocai
Wang, Yang
Mogler, Carolin
Cheng, Zhangjun
Wirth, Thomas
Friess, Helmut
Kleeff, Jörg
Hüser, Norbert
Sunami, Yoshiaki
author_facet Lu, Miao
Hartmann, Daniel
Braren, Rickmer
Gupta, Aayush
Wang, Baocai
Wang, Yang
Mogler, Carolin
Cheng, Zhangjun
Wirth, Thomas
Friess, Helmut
Kleeff, Jörg
Hüser, Norbert
Sunami, Yoshiaki
author_sort Lu, Miao
collection PubMed
description BACKGROUND: Hepatocellular carcinoma (HCC) is the most prevalent primary liver cancer, accounting for 80–90% of cases. Mutations are commonly found in the signaling regulating the PI3K/Akt pathway, leading to oncogenic cell proliferation and survival. Key transcription factors that are negatively regulated downstream of PI3K/Akt are members of the forkhead box O family (FOXO). FOXOs were initially considered as tumor suppressors by inducing cell cycle arrest and apoptosis. However, there is increasing evidence showing that FOXOs, especially FOXO3, can support tumorigenesis. METHODS: To understand the roles of FOXO3 in liver tumorigenesis and hepatocarcinogenesis, we analyzed HCC patient specimens and also established a doxycycline-regulated transgenic mouse model with hepatocyte-specific FOXO3 expression in a constitutively active form. RESULTS: We found that FOXO3 protein is significantly overexpressed and activated in livers of HCC patients. Hepatic activation of FOXO3 induced extensive hepatic damage and elevated gene expression of several HCC-associated factors. Furthermore, FOXO3 expression enhanced hepatotoxicin-induced tumorigenesis. Mechanistically, FOXO3 activation caused oxidative stress and DNA damage and triggered positive feedback-loop for Akt activation as well as mTORC2 activation. Interestingly, FOXO3 activated not only reactive oxygen species (ROS)-promoting pathways, but also ROS-eliminating systems, which can be associated with the activation of the pentose phosphate pathway. CONCLUSIONS: FOXO3 is a master regulator of ROS in a ‘carrot and stick’ manner; on one side avoiding cellular crisis while also supporting hepatocellular carcinogenesis. Clinically, we suggest analyzing FOXO3 activation status in patients with liver diseases, in addition to PI3K/Akt signaling. Personalized therapy of FOXO3 inhibition may be a reasonable, depending on the activation status of FOXO3.
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spelling pubmed-67289712019-09-12 Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis Lu, Miao Hartmann, Daniel Braren, Rickmer Gupta, Aayush Wang, Baocai Wang, Yang Mogler, Carolin Cheng, Zhangjun Wirth, Thomas Friess, Helmut Kleeff, Jörg Hüser, Norbert Sunami, Yoshiaki BMC Cancer Research Article BACKGROUND: Hepatocellular carcinoma (HCC) is the most prevalent primary liver cancer, accounting for 80–90% of cases. Mutations are commonly found in the signaling regulating the PI3K/Akt pathway, leading to oncogenic cell proliferation and survival. Key transcription factors that are negatively regulated downstream of PI3K/Akt are members of the forkhead box O family (FOXO). FOXOs were initially considered as tumor suppressors by inducing cell cycle arrest and apoptosis. However, there is increasing evidence showing that FOXOs, especially FOXO3, can support tumorigenesis. METHODS: To understand the roles of FOXO3 in liver tumorigenesis and hepatocarcinogenesis, we analyzed HCC patient specimens and also established a doxycycline-regulated transgenic mouse model with hepatocyte-specific FOXO3 expression in a constitutively active form. RESULTS: We found that FOXO3 protein is significantly overexpressed and activated in livers of HCC patients. Hepatic activation of FOXO3 induced extensive hepatic damage and elevated gene expression of several HCC-associated factors. Furthermore, FOXO3 expression enhanced hepatotoxicin-induced tumorigenesis. Mechanistically, FOXO3 activation caused oxidative stress and DNA damage and triggered positive feedback-loop for Akt activation as well as mTORC2 activation. Interestingly, FOXO3 activated not only reactive oxygen species (ROS)-promoting pathways, but also ROS-eliminating systems, which can be associated with the activation of the pentose phosphate pathway. CONCLUSIONS: FOXO3 is a master regulator of ROS in a ‘carrot and stick’ manner; on one side avoiding cellular crisis while also supporting hepatocellular carcinogenesis. Clinically, we suggest analyzing FOXO3 activation status in patients with liver diseases, in addition to PI3K/Akt signaling. Personalized therapy of FOXO3 inhibition may be a reasonable, depending on the activation status of FOXO3. BioMed Central 2019-09-05 /pmc/articles/PMC6728971/ /pubmed/31488102 http://dx.doi.org/10.1186/s12885-019-6110-6 Text en © The Author(s). 2019 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Lu, Miao
Hartmann, Daniel
Braren, Rickmer
Gupta, Aayush
Wang, Baocai
Wang, Yang
Mogler, Carolin
Cheng, Zhangjun
Wirth, Thomas
Friess, Helmut
Kleeff, Jörg
Hüser, Norbert
Sunami, Yoshiaki
Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis
title Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis
title_full Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis
title_fullStr Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis
title_full_unstemmed Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis
title_short Oncogenic Akt-FOXO3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis
title_sort oncogenic akt-foxo3 loop favors tumor-promoting modes and enhances oxidative damage-associated hepatocellular carcinogenesis
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6728971/
https://www.ncbi.nlm.nih.gov/pubmed/31488102
http://dx.doi.org/10.1186/s12885-019-6110-6
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