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MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility

Epigenetic silencing by DNA methylation in brain tumors has been reported for many genes, however, their function on pathogenesis needs to be evaluated. We investigated the MTSS1 gene, identified as hypermethylated by differential methylation hybridization (DMH). Fifty-nine glioma tissue samples and...

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Autores principales: Luxen, Daniel, Gielen, Gerrit H., Waha, Anke, Isselstein, Lukas, Müller, Tim, Koch, Philipp, Hammes, Jennifer, Becker, Albert, Simon, Matthias, Wurst, Peter, Endl, Elmar, Pietsch, Torsten, Gessi, Marco, Waha, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5167248/
https://www.ncbi.nlm.nih.gov/pubmed/27988423
http://dx.doi.org/10.1016/j.tranon.2016.11.006
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author Luxen, Daniel
Gielen, Gerrit H.
Waha, Anke
Isselstein, Lukas
Müller, Tim
Koch, Philipp
Hammes, Jennifer
Becker, Albert
Simon, Matthias
Wurst, Peter
Endl, Elmar
Pietsch, Torsten
Gessi, Marco
Waha, Andreas
author_facet Luxen, Daniel
Gielen, Gerrit H.
Waha, Anke
Isselstein, Lukas
Müller, Tim
Koch, Philipp
Hammes, Jennifer
Becker, Albert
Simon, Matthias
Wurst, Peter
Endl, Elmar
Pietsch, Torsten
Gessi, Marco
Waha, Andreas
author_sort Luxen, Daniel
collection PubMed
description Epigenetic silencing by DNA methylation in brain tumors has been reported for many genes, however, their function on pathogenesis needs to be evaluated. We investigated the MTSS1 gene, identified as hypermethylated by differential methylation hybridization (DMH). Fifty-nine glioma tissue samples and seven glioma cell lines were examined for hypermethylation of the MTSS1 promotor, MTSS1 expression levels and gene dosage. GBM cell lines were treated with demethylating agents and interrogated for functional consequences of MTSS1 expression after transient transfection. Hypermethylation was significantly associated with IDH1/2 mutation. Comparative SNP analysis indicates higher incidence of loss of heterozygosity of MTSS1 in anaplastic astrocytomas and secondary glioblastomas as well as hypermethylation of the remaining allele. Reversal of promoter hypermethylation results in an increased MTSS1 expression. Cell motility was significantly inhibited by MTSS1 overexpression without influencing cell growth or apoptosis. Immunofluorescence analysis of MTSS1 in human astrocytes indicates co-localization with actin filaments. MTSS1 is down-regulated by DNA methylation in glioblastoma cell lines and is part of the G-CIMP phenotype in primary glioma tissues. Our data on normal astrocytes suggest a function of MTSS1 at focal contact structures with an impact on migratory capacity but no influence on apoptosis or cellular proliferation.
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spelling pubmed-51672482016-12-23 MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility Luxen, Daniel Gielen, Gerrit H. Waha, Anke Isselstein, Lukas Müller, Tim Koch, Philipp Hammes, Jennifer Becker, Albert Simon, Matthias Wurst, Peter Endl, Elmar Pietsch, Torsten Gessi, Marco Waha, Andreas Transl Oncol Original article Epigenetic silencing by DNA methylation in brain tumors has been reported for many genes, however, their function on pathogenesis needs to be evaluated. We investigated the MTSS1 gene, identified as hypermethylated by differential methylation hybridization (DMH). Fifty-nine glioma tissue samples and seven glioma cell lines were examined for hypermethylation of the MTSS1 promotor, MTSS1 expression levels and gene dosage. GBM cell lines were treated with demethylating agents and interrogated for functional consequences of MTSS1 expression after transient transfection. Hypermethylation was significantly associated with IDH1/2 mutation. Comparative SNP analysis indicates higher incidence of loss of heterozygosity of MTSS1 in anaplastic astrocytomas and secondary glioblastomas as well as hypermethylation of the remaining allele. Reversal of promoter hypermethylation results in an increased MTSS1 expression. Cell motility was significantly inhibited by MTSS1 overexpression without influencing cell growth or apoptosis. Immunofluorescence analysis of MTSS1 in human astrocytes indicates co-localization with actin filaments. MTSS1 is down-regulated by DNA methylation in glioblastoma cell lines and is part of the G-CIMP phenotype in primary glioma tissues. Our data on normal astrocytes suggest a function of MTSS1 at focal contact structures with an impact on migratory capacity but no influence on apoptosis or cellular proliferation. Neoplasia Press 2016-12-15 /pmc/articles/PMC5167248/ /pubmed/27988423 http://dx.doi.org/10.1016/j.tranon.2016.11.006 Text en © 2016 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original article
Luxen, Daniel
Gielen, Gerrit H.
Waha, Anke
Isselstein, Lukas
Müller, Tim
Koch, Philipp
Hammes, Jennifer
Becker, Albert
Simon, Matthias
Wurst, Peter
Endl, Elmar
Pietsch, Torsten
Gessi, Marco
Waha, Andreas
MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility
title MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility
title_full MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility
title_fullStr MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility
title_full_unstemmed MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility
title_short MTSS1 is epigenetically regulated in glioma cells and inhibits glioma cell motility
title_sort mtss1 is epigenetically regulated in glioma cells and inhibits glioma cell motility
topic Original article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5167248/
https://www.ncbi.nlm.nih.gov/pubmed/27988423
http://dx.doi.org/10.1016/j.tranon.2016.11.006
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