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Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer

The transcription factor FOXO3 is a well-established tumor suppressor whose activity, stability, and localization are regulated by phosphorylation and acetylation. Previous data by our laboratory demonstrated amplified thromboxane-A(2) signaling was associated with poor prognoses in bladder cancer p...

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Autores principales: Sobolesky, Philip M., Halushka, Perry V., Garrett-Mayer, Elizabeth, Smith, Michael T., Moussa, Omar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4159332/
https://www.ncbi.nlm.nih.gov/pubmed/25202904
http://dx.doi.org/10.1371/journal.pone.0107530
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author Sobolesky, Philip M.
Halushka, Perry V.
Garrett-Mayer, Elizabeth
Smith, Michael T.
Moussa, Omar
author_facet Sobolesky, Philip M.
Halushka, Perry V.
Garrett-Mayer, Elizabeth
Smith, Michael T.
Moussa, Omar
author_sort Sobolesky, Philip M.
collection PubMed
description The transcription factor FOXO3 is a well-established tumor suppressor whose activity, stability, and localization are regulated by phosphorylation and acetylation. Previous data by our laboratory demonstrated amplified thromboxane-A(2) signaling was associated with poor prognoses in bladder cancer patients and overexpression of the thromboxane-A(2) isoform-β receptor (TPβ), but not TPα, induced malignant transformation of immortalized bladder cells in vivo. Here, we describe a mechanism of TP mediated modulation of FOXO3 activity and localization by phosphorylation and deacetylation in a bladder cancer cell model. In vitro gain and loss of function studies performed in non-transformed cell lines, UROsta and SV-HUC, revealed knockdown of FOXO3 expression by shRNA increased cell migration and invasion, while exogenously overexpressing TPβ raised basal phosphorylated (p)FOXO3-S294 levels. Conversely, overexpression of ERK-resistant, mutant FOXO3 reduced increases in UMUC3 cell migration and invasion, including that mediated by TP agonist (U46619). Additionally, stimulation of UMUC3 cells with U46619 increased pFOXO3-S294 expression, which could be attenuated by treatment with a TP antagonist (PTXA(2)) or ERK inhibitor (U0126). Initially U46619 caused nuclear accumulation of pFOXO3-S294; however, prolonged stimulation increased FOXO3 cytoplasmic localization. U46619 stimulation decreased overall FOXO3 transcriptional activity, but was associated with increased expression of its pro-survival target, manganese superoxide dismutase. The data also shows that TP stimulation increased the expression of the histone deacetylase, SIRT1, and corresponded with decreased acetylated-FOXO3. Collectively, the data suggest a role for TP signaling in the regulation of FOXO3 activity, mediated in part through phosphorylation and deacetylation.
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spelling pubmed-41593322014-09-12 Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer Sobolesky, Philip M. Halushka, Perry V. Garrett-Mayer, Elizabeth Smith, Michael T. Moussa, Omar PLoS One Research Article The transcription factor FOXO3 is a well-established tumor suppressor whose activity, stability, and localization are regulated by phosphorylation and acetylation. Previous data by our laboratory demonstrated amplified thromboxane-A(2) signaling was associated with poor prognoses in bladder cancer patients and overexpression of the thromboxane-A(2) isoform-β receptor (TPβ), but not TPα, induced malignant transformation of immortalized bladder cells in vivo. Here, we describe a mechanism of TP mediated modulation of FOXO3 activity and localization by phosphorylation and deacetylation in a bladder cancer cell model. In vitro gain and loss of function studies performed in non-transformed cell lines, UROsta and SV-HUC, revealed knockdown of FOXO3 expression by shRNA increased cell migration and invasion, while exogenously overexpressing TPβ raised basal phosphorylated (p)FOXO3-S294 levels. Conversely, overexpression of ERK-resistant, mutant FOXO3 reduced increases in UMUC3 cell migration and invasion, including that mediated by TP agonist (U46619). Additionally, stimulation of UMUC3 cells with U46619 increased pFOXO3-S294 expression, which could be attenuated by treatment with a TP antagonist (PTXA(2)) or ERK inhibitor (U0126). Initially U46619 caused nuclear accumulation of pFOXO3-S294; however, prolonged stimulation increased FOXO3 cytoplasmic localization. U46619 stimulation decreased overall FOXO3 transcriptional activity, but was associated with increased expression of its pro-survival target, manganese superoxide dismutase. The data also shows that TP stimulation increased the expression of the histone deacetylase, SIRT1, and corresponded with decreased acetylated-FOXO3. Collectively, the data suggest a role for TP signaling in the regulation of FOXO3 activity, mediated in part through phosphorylation and deacetylation. Public Library of Science 2014-09-09 /pmc/articles/PMC4159332/ /pubmed/25202904 http://dx.doi.org/10.1371/journal.pone.0107530 Text en © 2014 Sobolesky et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sobolesky, Philip M.
Halushka, Perry V.
Garrett-Mayer, Elizabeth
Smith, Michael T.
Moussa, Omar
Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer
title Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer
title_full Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer
title_fullStr Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer
title_full_unstemmed Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer
title_short Regulation of the Tumor Suppressor FOXO3 by the Thromboxane-A(2) Receptors in Urothelial Cancer
title_sort regulation of the tumor suppressor foxo3 by the thromboxane-a(2) receptors in urothelial cancer
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4159332/
https://www.ncbi.nlm.nih.gov/pubmed/25202904
http://dx.doi.org/10.1371/journal.pone.0107530
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