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Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer

BACKGROUND: Many cancerous cells accumulate β-catenin in the nucleus. We examined the role of epidermal growth factor receptor (EGFR) signaling in the accumulation of β-catenin in the nuclei of oral cancer cells. RESULTS: We used two strains of cultured oral cancer cells, one with reduced EGFR expre...

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Autores principales: Lee, Chien-Hsing, Hung, Hsing-Wen, Hung, Pei-Hsin, Shieh, Yi-Shing
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2850885/
https://www.ncbi.nlm.nih.gov/pubmed/20302655
http://dx.doi.org/10.1186/1476-4598-9-64
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author Lee, Chien-Hsing
Hung, Hsing-Wen
Hung, Pei-Hsin
Shieh, Yi-Shing
author_facet Lee, Chien-Hsing
Hung, Hsing-Wen
Hung, Pei-Hsin
Shieh, Yi-Shing
author_sort Lee, Chien-Hsing
collection PubMed
description BACKGROUND: Many cancerous cells accumulate β-catenin in the nucleus. We examined the role of epidermal growth factor receptor (EGFR) signaling in the accumulation of β-catenin in the nuclei of oral cancer cells. RESULTS: We used two strains of cultured oral cancer cells, one with reduced EGFR expression (OECM1 cells) and one with elevated EGFR expression (SAS cells), and measured downstream effects, such as phosphorylation of β-catenin and GSK-3β, association of β-catenin with E-cadherin, and target gene regulation. We also studied the expression of EGFR, β-catenin, and cyclin D1 in 112 samples of oral cancer by immunostaining. Activation of EGFR signaling increased the amount of β-catenin in the nucleus and decreased the amount in the membranes. EGF treatment increased phosphorylation of β-catenin (tyrosine) and GSK-3β(Ser-(9), resulting in a loss of β-catenin association with E-cadherin. TOP-FLASH and FOP-FLASH reporter assays demonstrated that the EGFR signal regulates β-catenin transcriptional activity and mediates cyclin D1 expression. Chromatin immunoprecipitation experiments indicated that the EGFR signal affects chromatin architecture at the regulatory element of cyclin D1, and that the CBP, HDAC1, and Suv39h1 histone/chromatin remodeling complex is involved in this process. Immunostaining showed a significant association between EGFR expression and aberrant accumulation of β-catenin in oral cancer. CONCLUSIONS: EGFR signaling regulates β-catenin localization and stability, target gene expression, and tumor progression in oral cancer. Moreover, our data suggest that aberrant accumulation of β-catenin under EGFR activation is a malignancy marker of oral cancer.
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spelling pubmed-28508852010-04-08 Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer Lee, Chien-Hsing Hung, Hsing-Wen Hung, Pei-Hsin Shieh, Yi-Shing Mol Cancer Research BACKGROUND: Many cancerous cells accumulate β-catenin in the nucleus. We examined the role of epidermal growth factor receptor (EGFR) signaling in the accumulation of β-catenin in the nuclei of oral cancer cells. RESULTS: We used two strains of cultured oral cancer cells, one with reduced EGFR expression (OECM1 cells) and one with elevated EGFR expression (SAS cells), and measured downstream effects, such as phosphorylation of β-catenin and GSK-3β, association of β-catenin with E-cadherin, and target gene regulation. We also studied the expression of EGFR, β-catenin, and cyclin D1 in 112 samples of oral cancer by immunostaining. Activation of EGFR signaling increased the amount of β-catenin in the nucleus and decreased the amount in the membranes. EGF treatment increased phosphorylation of β-catenin (tyrosine) and GSK-3β(Ser-(9), resulting in a loss of β-catenin association with E-cadherin. TOP-FLASH and FOP-FLASH reporter assays demonstrated that the EGFR signal regulates β-catenin transcriptional activity and mediates cyclin D1 expression. Chromatin immunoprecipitation experiments indicated that the EGFR signal affects chromatin architecture at the regulatory element of cyclin D1, and that the CBP, HDAC1, and Suv39h1 histone/chromatin remodeling complex is involved in this process. Immunostaining showed a significant association between EGFR expression and aberrant accumulation of β-catenin in oral cancer. CONCLUSIONS: EGFR signaling regulates β-catenin localization and stability, target gene expression, and tumor progression in oral cancer. Moreover, our data suggest that aberrant accumulation of β-catenin under EGFR activation is a malignancy marker of oral cancer. BioMed Central 2010-03-19 /pmc/articles/PMC2850885/ /pubmed/20302655 http://dx.doi.org/10.1186/1476-4598-9-64 Text en Copyright ©2010 Lee 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 cited.
spellingShingle Research
Lee, Chien-Hsing
Hung, Hsing-Wen
Hung, Pei-Hsin
Shieh, Yi-Shing
Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer
title Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer
title_full Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer
title_fullStr Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer
title_full_unstemmed Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer
title_short Epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer
title_sort epidermal growth factor receptor regulates β-catenin location, stability, and transcriptional activity in oral cancer
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2850885/
https://www.ncbi.nlm.nih.gov/pubmed/20302655
http://dx.doi.org/10.1186/1476-4598-9-64
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