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Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma

Sox9 has gained increasing importance both functionally and as a prognostic factor in cancer. We demonstrate a functional role for Sox9 in inducing a mesenchymal phenotype in lung ADC. We show that Sox9 mRNA and protein are overexpressed in lung ADC, particularly those with KRAS mutations. Sox9 expr...

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Autores principales: Capaccione, Kathleen M., Hong, Xuehui, Morgan, Katherine M., Liu, Wenyu, Bishop, Michael J., Liu, LianXin, Markert, Elke, Deen, Malik, Minerowicz, Christine, Bertino, Joseph R., Allen, Thaddeus, Pine, Sharon R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4116509/
https://www.ncbi.nlm.nih.gov/pubmed/25004243
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author Capaccione, Kathleen M.
Hong, Xuehui
Morgan, Katherine M.
Liu, Wenyu
Bishop, Michael J.
Liu, LianXin
Markert, Elke
Deen, Malik
Minerowicz, Christine
Bertino, Joseph R.
Allen, Thaddeus
Pine, Sharon R.
author_facet Capaccione, Kathleen M.
Hong, Xuehui
Morgan, Katherine M.
Liu, Wenyu
Bishop, Michael J.
Liu, LianXin
Markert, Elke
Deen, Malik
Minerowicz, Christine
Bertino, Joseph R.
Allen, Thaddeus
Pine, Sharon R.
author_sort Capaccione, Kathleen M.
collection PubMed
description Sox9 has gained increasing importance both functionally and as a prognostic factor in cancer. We demonstrate a functional role for Sox9 in inducing a mesenchymal phenotype in lung ADC. We show that Sox9 mRNA and protein are overexpressed in lung ADC, particularly those with KRAS mutations. Sox9 expression correlated with the Notch target gene Hes1, and numerous other Notch pathway components. We observed that Sox9 is a potent inducer of lung cancer cell motility and invasion, and a negative regulator of E-cadherin, a key protein that is lost during epithelial-mesenchymal transition (EMT). Moreover, we show that Notch1 signaling directly regulates Sox9 expression through a SOX9 promoter binding site, independently of the TGF-β pathway, and that Sox9 participates in Notch-1 induced cell motility, cell invasion, and loss of E-cadherin expression. Together, the results identify a new functional role for a Notch1-Sox9 signaling axis in lung ADC that may explain the correlation of Sox9 with tumor progression, higher tumor grade, and poor lung cancer survival. In addition to Notch and TGF-β, Sox9 also acts downstream of NF-κB and Wnt/β-catenin signaling. Thus, Sox9 could potentially act as a hub to mediate cross-talk among key oncogenic pathways in lung ADC. Targeting Sox9 expression or transcriptional activity could potentially reduce resistance to targeted therapy for lung ADC caused by pathway redundancy.
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spelling pubmed-41165092014-08-04 Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma Capaccione, Kathleen M. Hong, Xuehui Morgan, Katherine M. Liu, Wenyu Bishop, Michael J. Liu, LianXin Markert, Elke Deen, Malik Minerowicz, Christine Bertino, Joseph R. Allen, Thaddeus Pine, Sharon R. Oncotarget Research Paper Sox9 has gained increasing importance both functionally and as a prognostic factor in cancer. We demonstrate a functional role for Sox9 in inducing a mesenchymal phenotype in lung ADC. We show that Sox9 mRNA and protein are overexpressed in lung ADC, particularly those with KRAS mutations. Sox9 expression correlated with the Notch target gene Hes1, and numerous other Notch pathway components. We observed that Sox9 is a potent inducer of lung cancer cell motility and invasion, and a negative regulator of E-cadherin, a key protein that is lost during epithelial-mesenchymal transition (EMT). Moreover, we show that Notch1 signaling directly regulates Sox9 expression through a SOX9 promoter binding site, independently of the TGF-β pathway, and that Sox9 participates in Notch-1 induced cell motility, cell invasion, and loss of E-cadherin expression. Together, the results identify a new functional role for a Notch1-Sox9 signaling axis in lung ADC that may explain the correlation of Sox9 with tumor progression, higher tumor grade, and poor lung cancer survival. In addition to Notch and TGF-β, Sox9 also acts downstream of NF-κB and Wnt/β-catenin signaling. Thus, Sox9 could potentially act as a hub to mediate cross-talk among key oncogenic pathways in lung ADC. Targeting Sox9 expression or transcriptional activity could potentially reduce resistance to targeted therapy for lung ADC caused by pathway redundancy. Impact Journals LLC 2014-05-13 /pmc/articles/PMC4116509/ /pubmed/25004243 Text en Copyright: © 2014 Capaccione 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
Capaccione, Kathleen M.
Hong, Xuehui
Morgan, Katherine M.
Liu, Wenyu
Bishop, Michael J.
Liu, LianXin
Markert, Elke
Deen, Malik
Minerowicz, Christine
Bertino, Joseph R.
Allen, Thaddeus
Pine, Sharon R.
Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma
title Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma
title_full Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma
title_fullStr Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma
title_full_unstemmed Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma
title_short Sox9 mediates Notch1-induced mesenchymal features in lung adenocarcinoma
title_sort sox9 mediates notch1-induced mesenchymal features in lung adenocarcinoma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4116509/
https://www.ncbi.nlm.nih.gov/pubmed/25004243
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