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PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals

Platelet derived growth factor receptors (PDGFRs) play an important role in tumor pathogenesis, and they are frequently overexpressed in glioblastoma (GBM). Earlier we have shown a higher protein expression of PDGFR isoforms (α and β) in peritumoral-tissue derived cancer stem cells (p-CSC) than in t...

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Autores principales: Cenciarelli, Carlo, Marei, Hany E., Felsani, Armando, Casalbore, Patrizia, Sica, Gigliola, Puglisi, Maria Ausiliatrice, Cameron, Angus J.M., Olivi, Alessandro, Mangiola, Annunziato
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5288168/
https://www.ncbi.nlm.nih.gov/pubmed/27344175
http://dx.doi.org/10.18632/oncotarget.10132
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author Cenciarelli, Carlo
Marei, Hany E.
Felsani, Armando
Casalbore, Patrizia
Sica, Gigliola
Puglisi, Maria Ausiliatrice
Cameron, Angus J.M.
Olivi, Alessandro
Mangiola, Annunziato
author_facet Cenciarelli, Carlo
Marei, Hany E.
Felsani, Armando
Casalbore, Patrizia
Sica, Gigliola
Puglisi, Maria Ausiliatrice
Cameron, Angus J.M.
Olivi, Alessandro
Mangiola, Annunziato
author_sort Cenciarelli, Carlo
collection PubMed
description Platelet derived growth factor receptors (PDGFRs) play an important role in tumor pathogenesis, and they are frequently overexpressed in glioblastoma (GBM). Earlier we have shown a higher protein expression of PDGFR isoforms (α and β) in peritumoral-tissue derived cancer stem cells (p-CSC) than in tumor core (c-CSC) of several GBM affected patients. In the current study, in order to assess the activity of PDGFRα/PDGF-AA signaling axis, we performed time course experiments to monitor the effects of exogenous PDGF-AA on the expression of downstream target genes in c-CSC vs p-CSC. Interestingly, in p-CSC we detected the upregulation of Y705-phosphorylated Stat3, concurrent with a decrement of Rb1 protein in its active state, within minutes of PDGF-AA addition. This finding prompted us to elucidate the role of PDGFRα in self-renewal, invasion and differentiation in p-CSC by using short hairpin RNA depletion of PDGFRα expression. Notably, in PDGFRα-depleted cells, protein analysis revealed attenuation of stemness-related and glial markers expression, alongside early activation of the neuronal marker MAP2a/b that correlated with the induction of tumor suppressor Rb1. The in vitro reduction of the invasive capacity of PDGFRα-depleted CSC as compared to parental cells correlated with the downmodulation of markers of epithelial-mesenchymal transition phenotype and angiogenesis. Surprisingly, we observed the induction of anti-apoptotic proteins and compensatory oncogenic signals such as EDN1, EDNRB, PRKCB1, PDGF-C and PDGF-D. To conclude, we hypothesize that the newly discovered PDGFRα/Stat3/Rb1 regulatory axis might represent a potential therapeutic target for GBM treatment.
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spelling pubmed-52881682017-02-07 PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals Cenciarelli, Carlo Marei, Hany E. Felsani, Armando Casalbore, Patrizia Sica, Gigliola Puglisi, Maria Ausiliatrice Cameron, Angus J.M. Olivi, Alessandro Mangiola, Annunziato Oncotarget Research Paper Platelet derived growth factor receptors (PDGFRs) play an important role in tumor pathogenesis, and they are frequently overexpressed in glioblastoma (GBM). Earlier we have shown a higher protein expression of PDGFR isoforms (α and β) in peritumoral-tissue derived cancer stem cells (p-CSC) than in tumor core (c-CSC) of several GBM affected patients. In the current study, in order to assess the activity of PDGFRα/PDGF-AA signaling axis, we performed time course experiments to monitor the effects of exogenous PDGF-AA on the expression of downstream target genes in c-CSC vs p-CSC. Interestingly, in p-CSC we detected the upregulation of Y705-phosphorylated Stat3, concurrent with a decrement of Rb1 protein in its active state, within minutes of PDGF-AA addition. This finding prompted us to elucidate the role of PDGFRα in self-renewal, invasion and differentiation in p-CSC by using short hairpin RNA depletion of PDGFRα expression. Notably, in PDGFRα-depleted cells, protein analysis revealed attenuation of stemness-related and glial markers expression, alongside early activation of the neuronal marker MAP2a/b that correlated with the induction of tumor suppressor Rb1. The in vitro reduction of the invasive capacity of PDGFRα-depleted CSC as compared to parental cells correlated with the downmodulation of markers of epithelial-mesenchymal transition phenotype and angiogenesis. Surprisingly, we observed the induction of anti-apoptotic proteins and compensatory oncogenic signals such as EDN1, EDNRB, PRKCB1, PDGF-C and PDGF-D. To conclude, we hypothesize that the newly discovered PDGFRα/Stat3/Rb1 regulatory axis might represent a potential therapeutic target for GBM treatment. Impact Journals LLC 2016-06-17 /pmc/articles/PMC5288168/ /pubmed/27344175 http://dx.doi.org/10.18632/oncotarget.10132 Text en Copyright: © 2016 Cenciarelli et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Cenciarelli, Carlo
Marei, Hany E.
Felsani, Armando
Casalbore, Patrizia
Sica, Gigliola
Puglisi, Maria Ausiliatrice
Cameron, Angus J.M.
Olivi, Alessandro
Mangiola, Annunziato
PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals
title PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals
title_full PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals
title_fullStr PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals
title_full_unstemmed PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals
title_short PDGFRα depletion attenuates glioblastoma stem cells features by modulation of STAT3, RB1 and multiple oncogenic signals
title_sort pdgfrα depletion attenuates glioblastoma stem cells features by modulation of stat3, rb1 and multiple oncogenic signals
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5288168/
https://www.ncbi.nlm.nih.gov/pubmed/27344175
http://dx.doi.org/10.18632/oncotarget.10132
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