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Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression

BACKGROUND: PTOV1 is an adaptor protein with functions in diverse processes, including gene transcription and protein translation, whose overexpression is associated with a higher proliferation index and tumor grade in prostate cancer (PC) and other neoplasms. Here we report its interaction with the...

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Autores principales: Alaña, Lide, Sesé, Marta, Cánovas, Verónica, Punyal, Yolanda, Fernández, Yolanda, Abasolo, Ibane, de Torres, Inés, Ruiz, Cristina, Espinosa, Lluís, Bigas, Anna, y Cajal, Santiago Ramón, Fernández, Pedro L, Serras, Florenci, Corominas, Montserrat, Thomson, Timothy M, Paciucci, Rosanna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021398/
https://www.ncbi.nlm.nih.gov/pubmed/24684754
http://dx.doi.org/10.1186/1476-4598-13-74
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author Alaña, Lide
Sesé, Marta
Cánovas, Verónica
Punyal, Yolanda
Fernández, Yolanda
Abasolo, Ibane
de Torres, Inés
Ruiz, Cristina
Espinosa, Lluís
Bigas, Anna
y Cajal, Santiago Ramón
Fernández, Pedro L
Serras, Florenci
Corominas, Montserrat
Thomson, Timothy M
Paciucci, Rosanna
author_facet Alaña, Lide
Sesé, Marta
Cánovas, Verónica
Punyal, Yolanda
Fernández, Yolanda
Abasolo, Ibane
de Torres, Inés
Ruiz, Cristina
Espinosa, Lluís
Bigas, Anna
y Cajal, Santiago Ramón
Fernández, Pedro L
Serras, Florenci
Corominas, Montserrat
Thomson, Timothy M
Paciucci, Rosanna
author_sort Alaña, Lide
collection PubMed
description BACKGROUND: PTOV1 is an adaptor protein with functions in diverse processes, including gene transcription and protein translation, whose overexpression is associated with a higher proliferation index and tumor grade in prostate cancer (PC) and other neoplasms. Here we report its interaction with the Notch pathway and its involvement in PC progression. METHODS: Stable PTOV1 knockdown or overexpression were performed by lentiviral transduction. Protein interactions were analyzed by co-immunoprecipitation, pull-down and/or immunofluorescence. Endogenous gene expression was analyzed by real time RT-PCR and/or Western blotting. Exogenous promoter activities were studied by luciferase assays. Gene promoter interactions were analyzed by chromatin immunoprecipitation assays (ChIP). In vivo studies were performed in the Drosophila melanogaster wing, the SCID-Beige mouse model, and human prostate cancer tissues and metastasis. The Excel package was used for statistical analysis. RESULTS: Knockdown of PTOV1 in prostate epithelial cells and HaCaT skin keratinocytes caused the upregulation, and overexpression of PTOV1 the downregulation, of the Notch target genes HEY1 and HES1, suggesting that PTOV1 counteracts Notch signaling. Under conditions of inactive Notch signaling, endogenous PTOV1 associated with the HEY1 and HES1 promoters, together with components of the Notch repressor complex. Conversely, expression of active Notch1 provoked the dismissal of PTOV1 from these promoters. The antagonist role of PTOV1 on Notch activity was corroborated in the Drosophila melanogaster wing, where human PTOV1 exacerbated Notch deletion mutant phenotypes and suppressed the effects of constitutively active Notch. PTOV1 was required for optimal in vitro invasiveness and anchorage-independent growth of PC-3 cells, activities counteracted by Notch, and for their efficient growth and metastatic spread in vivo. In prostate tumors, the overexpression of PTOV1 was associated with decreased expression of HEY1 and HES1, and this correlation was significant in metastatic lesions. CONCLUSIONS: High levels of the adaptor protein PTOV1 counteract the transcriptional activity of Notch. Our evidences link the pro-oncogenic and pro-metastatic effects of PTOV1 in prostate cancer to its inhibitory activity on Notch signaling and are supportive of a tumor suppressor role of Notch in prostate cancer progression.
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spelling pubmed-40213982014-05-16 Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression Alaña, Lide Sesé, Marta Cánovas, Verónica Punyal, Yolanda Fernández, Yolanda Abasolo, Ibane de Torres, Inés Ruiz, Cristina Espinosa, Lluís Bigas, Anna y Cajal, Santiago Ramón Fernández, Pedro L Serras, Florenci Corominas, Montserrat Thomson, Timothy M Paciucci, Rosanna Mol Cancer Research BACKGROUND: PTOV1 is an adaptor protein with functions in diverse processes, including gene transcription and protein translation, whose overexpression is associated with a higher proliferation index and tumor grade in prostate cancer (PC) and other neoplasms. Here we report its interaction with the Notch pathway and its involvement in PC progression. METHODS: Stable PTOV1 knockdown or overexpression were performed by lentiviral transduction. Protein interactions were analyzed by co-immunoprecipitation, pull-down and/or immunofluorescence. Endogenous gene expression was analyzed by real time RT-PCR and/or Western blotting. Exogenous promoter activities were studied by luciferase assays. Gene promoter interactions were analyzed by chromatin immunoprecipitation assays (ChIP). In vivo studies were performed in the Drosophila melanogaster wing, the SCID-Beige mouse model, and human prostate cancer tissues and metastasis. The Excel package was used for statistical analysis. RESULTS: Knockdown of PTOV1 in prostate epithelial cells and HaCaT skin keratinocytes caused the upregulation, and overexpression of PTOV1 the downregulation, of the Notch target genes HEY1 and HES1, suggesting that PTOV1 counteracts Notch signaling. Under conditions of inactive Notch signaling, endogenous PTOV1 associated with the HEY1 and HES1 promoters, together with components of the Notch repressor complex. Conversely, expression of active Notch1 provoked the dismissal of PTOV1 from these promoters. The antagonist role of PTOV1 on Notch activity was corroborated in the Drosophila melanogaster wing, where human PTOV1 exacerbated Notch deletion mutant phenotypes and suppressed the effects of constitutively active Notch. PTOV1 was required for optimal in vitro invasiveness and anchorage-independent growth of PC-3 cells, activities counteracted by Notch, and for their efficient growth and metastatic spread in vivo. In prostate tumors, the overexpression of PTOV1 was associated with decreased expression of HEY1 and HES1, and this correlation was significant in metastatic lesions. CONCLUSIONS: High levels of the adaptor protein PTOV1 counteract the transcriptional activity of Notch. Our evidences link the pro-oncogenic and pro-metastatic effects of PTOV1 in prostate cancer to its inhibitory activity on Notch signaling and are supportive of a tumor suppressor role of Notch in prostate cancer progression. BioMed Central 2014-03-31 /pmc/articles/PMC4021398/ /pubmed/24684754 http://dx.doi.org/10.1186/1476-4598-13-74 Text en Copyright © 2014 Alaña et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited. 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
Alaña, Lide
Sesé, Marta
Cánovas, Verónica
Punyal, Yolanda
Fernández, Yolanda
Abasolo, Ibane
de Torres, Inés
Ruiz, Cristina
Espinosa, Lluís
Bigas, Anna
y Cajal, Santiago Ramón
Fernández, Pedro L
Serras, Florenci
Corominas, Montserrat
Thomson, Timothy M
Paciucci, Rosanna
Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression
title Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression
title_full Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression
title_fullStr Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression
title_full_unstemmed Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression
title_short Prostate tumor OVerexpressed-1 (PTOV1) down-regulates HES1 and HEY1 notch targets genes and promotes prostate cancer progression
title_sort prostate tumor overexpressed-1 (ptov1) down-regulates hes1 and hey1 notch targets genes and promotes prostate cancer progression
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4021398/
https://www.ncbi.nlm.nih.gov/pubmed/24684754
http://dx.doi.org/10.1186/1476-4598-13-74
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