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Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate

Diethyl maleate (DEM), a thiol-reactive α,β-unsaturated carbonyl compound, depletes glutathione (GSH) in exposed cells and was previously shown by us to elicit a stress response in Caenorhabditis elegans that, at lower concentrations, results in enhanced stress resistance and longer lifespan. This h...

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Autores principales: Gille, Andrea, Turkistani, Abdullah, Tsitsipatis, Dimitrios, Hou, Xiaoqing, Tauber, Sarah, Hamann, Ingrit, Urban, Nadine, Erler, Katrin, Steinbrenner, Holger, Klotz, Lars-Oliver
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6156746/
https://www.ncbi.nlm.nih.gov/pubmed/30261343
http://dx.doi.org/10.1016/j.redox.2018.09.010
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author Gille, Andrea
Turkistani, Abdullah
Tsitsipatis, Dimitrios
Hou, Xiaoqing
Tauber, Sarah
Hamann, Ingrit
Urban, Nadine
Erler, Katrin
Steinbrenner, Holger
Klotz, Lars-Oliver
author_facet Gille, Andrea
Turkistani, Abdullah
Tsitsipatis, Dimitrios
Hou, Xiaoqing
Tauber, Sarah
Hamann, Ingrit
Urban, Nadine
Erler, Katrin
Steinbrenner, Holger
Klotz, Lars-Oliver
author_sort Gille, Andrea
collection PubMed
description Diethyl maleate (DEM), a thiol-reactive α,β-unsaturated carbonyl compound, depletes glutathione (GSH) in exposed cells and was previously shown by us to elicit a stress response in Caenorhabditis elegans that, at lower concentrations, results in enhanced stress resistance and longer lifespan. This hormetic response was mediated through both the Nrf2 ortholog, SKN-1, and the forkhead box O (FOXO) family transcription factor DAF-16. As FOXO signaling is evolutionarily conserved, we analyzed here the effects of DEM exposure on FOXO in cultured human cells (HepG2, HEK293). DEM elicited nuclear accumulation of GFP-coupled wild-type human FOXO1, as well as of a cysteine-deficient FOXO1 mutant. Despite the nuclear accumulation of FOXO1, neither FOXO1 DNA binding nor FOXO target gene expression were stimulated, suggesting that DEM causes nuclear accumulation but not activation of FOXO1. FOXO1 nuclear exclusion elicited by insulin or xenobiotics such as arsenite or copper ions was attenuated by DEM, suggesting that DEM interfered with nuclear export. In addition, insulin-induced FOXO1 phosphorylation at Thr-24, which is associated with FOXO1 nuclear exclusion, was attenuated upon exposure to DEM. Different from FOXO-dependent expression of genes, Nrf2 target gene mRNAs were elevated upon exposure to DEM. These data suggest that, different from C. elegans, DEM elicits opposing effects on the two stress-responsive transcription factors, Nrf2 and FOXO1, in cultured human cells.
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spelling pubmed-61567462018-09-27 Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate Gille, Andrea Turkistani, Abdullah Tsitsipatis, Dimitrios Hou, Xiaoqing Tauber, Sarah Hamann, Ingrit Urban, Nadine Erler, Katrin Steinbrenner, Holger Klotz, Lars-Oliver Redox Biol Research Paper Diethyl maleate (DEM), a thiol-reactive α,β-unsaturated carbonyl compound, depletes glutathione (GSH) in exposed cells and was previously shown by us to elicit a stress response in Caenorhabditis elegans that, at lower concentrations, results in enhanced stress resistance and longer lifespan. This hormetic response was mediated through both the Nrf2 ortholog, SKN-1, and the forkhead box O (FOXO) family transcription factor DAF-16. As FOXO signaling is evolutionarily conserved, we analyzed here the effects of DEM exposure on FOXO in cultured human cells (HepG2, HEK293). DEM elicited nuclear accumulation of GFP-coupled wild-type human FOXO1, as well as of a cysteine-deficient FOXO1 mutant. Despite the nuclear accumulation of FOXO1, neither FOXO1 DNA binding nor FOXO target gene expression were stimulated, suggesting that DEM causes nuclear accumulation but not activation of FOXO1. FOXO1 nuclear exclusion elicited by insulin or xenobiotics such as arsenite or copper ions was attenuated by DEM, suggesting that DEM interfered with nuclear export. In addition, insulin-induced FOXO1 phosphorylation at Thr-24, which is associated with FOXO1 nuclear exclusion, was attenuated upon exposure to DEM. Different from FOXO-dependent expression of genes, Nrf2 target gene mRNAs were elevated upon exposure to DEM. These data suggest that, different from C. elegans, DEM elicits opposing effects on the two stress-responsive transcription factors, Nrf2 and FOXO1, in cultured human cells. Elsevier 2018-09-14 /pmc/articles/PMC6156746/ /pubmed/30261343 http://dx.doi.org/10.1016/j.redox.2018.09.010 Text en © 2018 The Authors http://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 Paper
Gille, Andrea
Turkistani, Abdullah
Tsitsipatis, Dimitrios
Hou, Xiaoqing
Tauber, Sarah
Hamann, Ingrit
Urban, Nadine
Erler, Katrin
Steinbrenner, Holger
Klotz, Lars-Oliver
Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate
title Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate
title_full Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate
title_fullStr Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate
title_full_unstemmed Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate
title_short Nuclear trapping of inactive FOXO1 by the Nrf2 activator diethyl maleate
title_sort nuclear trapping of inactive foxo1 by the nrf2 activator diethyl maleate
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6156746/
https://www.ncbi.nlm.nih.gov/pubmed/30261343
http://dx.doi.org/10.1016/j.redox.2018.09.010
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