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Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis

Alcohol abuse is a global health problem causing a substantial fraction of chronic liver diseases. Abundant TGF-β—a potent pro-fibrogenic cytokine—leads to disease progression. Our aim was to elucidate the crosstalk of TGF-β and alcohol on hepatocytes. Primary murine hepatocytes were challenged with...

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Autores principales: Gaitantzi, Haristi, Meyer, Christoph, Rakoczy, Pia, Thomas, Maria, Wahl, Kristin, Wandrer, Franziska, Bantel, Heike, Alborzinia, Hamed, Wölfl, Stefan, Ehnert, Sabrina, Nüssler, Andreas, Bergheim, Ina, Ciuclan, Loredana, Ebert, Matthias, Breitkopf-Heinlein, Katja, Dooley, Steven
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5833779/
https://www.ncbi.nlm.nih.gov/pubmed/29352207
http://dx.doi.org/10.1038/s41419-017-0071-y
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author Gaitantzi, Haristi
Meyer, Christoph
Rakoczy, Pia
Thomas, Maria
Wahl, Kristin
Wandrer, Franziska
Bantel, Heike
Alborzinia, Hamed
Wölfl, Stefan
Ehnert, Sabrina
Nüssler, Andreas
Bergheim, Ina
Ciuclan, Loredana
Ebert, Matthias
Breitkopf-Heinlein, Katja
Dooley, Steven
author_facet Gaitantzi, Haristi
Meyer, Christoph
Rakoczy, Pia
Thomas, Maria
Wahl, Kristin
Wandrer, Franziska
Bantel, Heike
Alborzinia, Hamed
Wölfl, Stefan
Ehnert, Sabrina
Nüssler, Andreas
Bergheim, Ina
Ciuclan, Loredana
Ebert, Matthias
Breitkopf-Heinlein, Katja
Dooley, Steven
author_sort Gaitantzi, Haristi
collection PubMed
description Alcohol abuse is a global health problem causing a substantial fraction of chronic liver diseases. Abundant TGF-β—a potent pro-fibrogenic cytokine—leads to disease progression. Our aim was to elucidate the crosstalk of TGF-β and alcohol on hepatocytes. Primary murine hepatocytes were challenged with ethanol and TGF-β and cell fate was determined. Fluidigm RNA analyses revealed transcriptional effects that regulate survival and apoptosis. Mechanistic insights were derived from enzyme/pathway inhibition experiments and modulation of oxidative stress levels. To substantiate findings, animal model specimens and human liver tissue cultures were investigated. Results: On its own, ethanol had no effect on hepatocyte apoptosis, whereas TGF-β increased cell death. Combined treatment led to massive hepatocyte apoptosis, which could also be recapitulated in human HCC liver tissue treated ex vivo. Alcohol boosted the TGF-β pro-apoptotic gene signature. The underlying mechanism of pathway crosstalk involves SMAD and non-SMAD/AKT signaling. Blunting CYP2E1 and ADH activities did not prevent this effect, implying that it was not a consequence of alcohol metabolism. In line with this, the ethanol metabolite acetaldehyde did not mimic the effect and glutathione supplementation did not prevent the super-induction of cell death. In contrast, blocking GSK-3β activity, a downstream mediator of AKT signaling, rescued the strong apoptotic response triggered by ethanol and TGF-β. This study provides novel information on the crosstalk between ethanol and TGF-β. We give evidence that ethanol directly leads to a boost of TGF-β’s pro-apoptotic function in hepatocytes, which may have implications for patients with chronic alcoholic liver disease.
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spelling pubmed-58337792018-03-06 Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis Gaitantzi, Haristi Meyer, Christoph Rakoczy, Pia Thomas, Maria Wahl, Kristin Wandrer, Franziska Bantel, Heike Alborzinia, Hamed Wölfl, Stefan Ehnert, Sabrina Nüssler, Andreas Bergheim, Ina Ciuclan, Loredana Ebert, Matthias Breitkopf-Heinlein, Katja Dooley, Steven Cell Death Dis Article Alcohol abuse is a global health problem causing a substantial fraction of chronic liver diseases. Abundant TGF-β—a potent pro-fibrogenic cytokine—leads to disease progression. Our aim was to elucidate the crosstalk of TGF-β and alcohol on hepatocytes. Primary murine hepatocytes were challenged with ethanol and TGF-β and cell fate was determined. Fluidigm RNA analyses revealed transcriptional effects that regulate survival and apoptosis. Mechanistic insights were derived from enzyme/pathway inhibition experiments and modulation of oxidative stress levels. To substantiate findings, animal model specimens and human liver tissue cultures were investigated. Results: On its own, ethanol had no effect on hepatocyte apoptosis, whereas TGF-β increased cell death. Combined treatment led to massive hepatocyte apoptosis, which could also be recapitulated in human HCC liver tissue treated ex vivo. Alcohol boosted the TGF-β pro-apoptotic gene signature. The underlying mechanism of pathway crosstalk involves SMAD and non-SMAD/AKT signaling. Blunting CYP2E1 and ADH activities did not prevent this effect, implying that it was not a consequence of alcohol metabolism. In line with this, the ethanol metabolite acetaldehyde did not mimic the effect and glutathione supplementation did not prevent the super-induction of cell death. In contrast, blocking GSK-3β activity, a downstream mediator of AKT signaling, rescued the strong apoptotic response triggered by ethanol and TGF-β. This study provides novel information on the crosstalk between ethanol and TGF-β. We give evidence that ethanol directly leads to a boost of TGF-β’s pro-apoptotic function in hepatocytes, which may have implications for patients with chronic alcoholic liver disease. Nature Publishing Group UK 2018-01-19 /pmc/articles/PMC5833779/ /pubmed/29352207 http://dx.doi.org/10.1038/s41419-017-0071-y Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as 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 images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Gaitantzi, Haristi
Meyer, Christoph
Rakoczy, Pia
Thomas, Maria
Wahl, Kristin
Wandrer, Franziska
Bantel, Heike
Alborzinia, Hamed
Wölfl, Stefan
Ehnert, Sabrina
Nüssler, Andreas
Bergheim, Ina
Ciuclan, Loredana
Ebert, Matthias
Breitkopf-Heinlein, Katja
Dooley, Steven
Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis
title Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis
title_full Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis
title_fullStr Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis
title_full_unstemmed Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis
title_short Ethanol sensitizes hepatocytes for TGF-β-triggered apoptosis
title_sort ethanol sensitizes hepatocytes for tgf-β-triggered apoptosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5833779/
https://www.ncbi.nlm.nih.gov/pubmed/29352207
http://dx.doi.org/10.1038/s41419-017-0071-y
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