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Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer

BACKGROUND: DNA methylation mediates gene silencing primarily by inducing repressive chromatin architecture via a common theme of interaction involving methyl-CpG binding (MBD) proteins, histone modifying enzymes and chromatin remodelling complexes. Hence, targeted inhibition of MBD protein function...

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Autores principales: Kar, Swayamsiddha, Sengupta, Dipta, Deb, Moonmoon, Shilpi, Arunima, Parbin, Sabnam, Rath, Sandip Kumar, Pradhan, Nibedita, Rakshit, Madhumita, Patra, Samir Kumar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4255691/
https://www.ncbi.nlm.nih.gov/pubmed/25478034
http://dx.doi.org/10.1186/1868-7083-6-20
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author Kar, Swayamsiddha
Sengupta, Dipta
Deb, Moonmoon
Shilpi, Arunima
Parbin, Sabnam
Rath, Sandip Kumar
Pradhan, Nibedita
Rakshit, Madhumita
Patra, Samir Kumar
author_facet Kar, Swayamsiddha
Sengupta, Dipta
Deb, Moonmoon
Shilpi, Arunima
Parbin, Sabnam
Rath, Sandip Kumar
Pradhan, Nibedita
Rakshit, Madhumita
Patra, Samir Kumar
author_sort Kar, Swayamsiddha
collection PubMed
description BACKGROUND: DNA methylation mediates gene silencing primarily by inducing repressive chromatin architecture via a common theme of interaction involving methyl-CpG binding (MBD) proteins, histone modifying enzymes and chromatin remodelling complexes. Hence, targeted inhibition of MBD protein function is now considered a potential therapeutic alternative for thwarting DNA hypermethylation prompted neoplastic progress. We have analyzed the gene and protein expression level of the principal factors responsible for gene silencing, that is, DNMT and MBD proteins in MCF-7 and MDA-MB-231 breast cancer cell lines after treatment with various epigenetic drugs. RESULTS: Our study reveals that the epigenetic modulators affect the expression levels at both transcript and protein levels as well as encourage growth arrest and apoptosis in MCF-7 and MDA-MB-231 cells. AZA, TSA, SFN, and SAM inhibit cell growth in MCF-7 and MDA-MB-231 cell lines in a dose-dependent manner, that is, with increasing concentrations of drugs the cell viability gradually decreases. All the epigenetic modulators promote apoptotic cell death, as is evident form increased chromatin condensation which is a distinct characteristic of apoptotic cells. From FACS analysis, it is also clear that these drugs induce G(2)-M arrest and apoptosis in breast cancer cells. Further, transcript and protein level expression of MBDs and DNMTs is also affected - after treatment with epigenetic drugs; the level of transcripts/mRNA of MBDs and DNMTs has consistently increased in general. The increase in level of gene expression is substantiated at the protein level also where treated cells show higher expression of DNMT1, DNMT3A, DNMT3B, and MBD proteins in comparison to untreated cells. In case of tissue samples, the expression of different DNMTs is tissue stage-specific. DNMT1 exhibits significantly higher expression in the metastatic stage, whereas, DNMT3A and DNMT3B have higher expression in the primary stage in comparison to the metastatic samples. CONCLUSION: The epigenetic modulators AZA, TSA, SFN, and SAM may provide opportunities for cancer prevention by regulating the components of epigenetic gene-silencing machinery especially DNMTs and MBDs.
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spelling pubmed-42556912014-12-05 Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer Kar, Swayamsiddha Sengupta, Dipta Deb, Moonmoon Shilpi, Arunima Parbin, Sabnam Rath, Sandip Kumar Pradhan, Nibedita Rakshit, Madhumita Patra, Samir Kumar Clin Epigenetics Research BACKGROUND: DNA methylation mediates gene silencing primarily by inducing repressive chromatin architecture via a common theme of interaction involving methyl-CpG binding (MBD) proteins, histone modifying enzymes and chromatin remodelling complexes. Hence, targeted inhibition of MBD protein function is now considered a potential therapeutic alternative for thwarting DNA hypermethylation prompted neoplastic progress. We have analyzed the gene and protein expression level of the principal factors responsible for gene silencing, that is, DNMT and MBD proteins in MCF-7 and MDA-MB-231 breast cancer cell lines after treatment with various epigenetic drugs. RESULTS: Our study reveals that the epigenetic modulators affect the expression levels at both transcript and protein levels as well as encourage growth arrest and apoptosis in MCF-7 and MDA-MB-231 cells. AZA, TSA, SFN, and SAM inhibit cell growth in MCF-7 and MDA-MB-231 cell lines in a dose-dependent manner, that is, with increasing concentrations of drugs the cell viability gradually decreases. All the epigenetic modulators promote apoptotic cell death, as is evident form increased chromatin condensation which is a distinct characteristic of apoptotic cells. From FACS analysis, it is also clear that these drugs induce G(2)-M arrest and apoptosis in breast cancer cells. Further, transcript and protein level expression of MBDs and DNMTs is also affected - after treatment with epigenetic drugs; the level of transcripts/mRNA of MBDs and DNMTs has consistently increased in general. The increase in level of gene expression is substantiated at the protein level also where treated cells show higher expression of DNMT1, DNMT3A, DNMT3B, and MBD proteins in comparison to untreated cells. In case of tissue samples, the expression of different DNMTs is tissue stage-specific. DNMT1 exhibits significantly higher expression in the metastatic stage, whereas, DNMT3A and DNMT3B have higher expression in the primary stage in comparison to the metastatic samples. CONCLUSION: The epigenetic modulators AZA, TSA, SFN, and SAM may provide opportunities for cancer prevention by regulating the components of epigenetic gene-silencing machinery especially DNMTs and MBDs. BioMed Central 2014-10-13 /pmc/articles/PMC4255691/ /pubmed/25478034 http://dx.doi.org/10.1186/1868-7083-6-20 Text en Copyright © 2014 Kar et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/4.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), 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
Kar, Swayamsiddha
Sengupta, Dipta
Deb, Moonmoon
Shilpi, Arunima
Parbin, Sabnam
Rath, Sandip Kumar
Pradhan, Nibedita
Rakshit, Madhumita
Patra, Samir Kumar
Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer
title Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer
title_full Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer
title_fullStr Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer
title_full_unstemmed Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer
title_short Expression profiling of DNA methylation-mediated epigenetic gene-silencing factors in breast cancer
title_sort expression profiling of dna methylation-mediated epigenetic gene-silencing factors in breast cancer
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4255691/
https://www.ncbi.nlm.nih.gov/pubmed/25478034
http://dx.doi.org/10.1186/1868-7083-6-20
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