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Disruption of CTCF at the miR-125b1 locus in gynecological cancers

BACKGROUND: In cancer cells, transcriptional gene silencing has been associated with genetic and epigenetic defects. The disruption of DNA methylation patterns and covalent histone marks has been associated with cancer development. Until recently, microRNA (miRNA) gene silencing was not well underst...

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Autores principales: Soto-Reyes, Ernesto, González-Barrios, Rodrigo, Cisneros-Soberanis, Fernanda, Herrera-Goepfert, Roberto, Pérez, Víctor, Cantú, David, Prada, Diddier, Castro, Clementina, Recillas-Targa, Félix, Herrera, Luis A
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3297514/
https://www.ncbi.nlm.nih.gov/pubmed/22277129
http://dx.doi.org/10.1186/1471-2407-12-40
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author Soto-Reyes, Ernesto
González-Barrios, Rodrigo
Cisneros-Soberanis, Fernanda
Herrera-Goepfert, Roberto
Pérez, Víctor
Cantú, David
Prada, Diddier
Castro, Clementina
Recillas-Targa, Félix
Herrera, Luis A
author_facet Soto-Reyes, Ernesto
González-Barrios, Rodrigo
Cisneros-Soberanis, Fernanda
Herrera-Goepfert, Roberto
Pérez, Víctor
Cantú, David
Prada, Diddier
Castro, Clementina
Recillas-Targa, Félix
Herrera, Luis A
author_sort Soto-Reyes, Ernesto
collection PubMed
description BACKGROUND: In cancer cells, transcriptional gene silencing has been associated with genetic and epigenetic defects. The disruption of DNA methylation patterns and covalent histone marks has been associated with cancer development. Until recently, microRNA (miRNA) gene silencing was not well understood. In particular, miR-125b1 has been suggested to be an miRNA with tumor suppressor activity, and it has been shown to be deregulated in various human cancers. In the present study, we evaluated the DNA methylation at the CpG island proximal to the transcription start site of miR-125b1 in cancer cell lines as well as in normal tissues and gynecological tumor samples. In addition, we analyzed the association of CTCF and covalent histone modifications at the miR-125b1 locus. METHODS: To assess the DNA methylation status of the miR-125b1, genomic DNA was transformed with sodium bisulfite, and then PCR-amplified with modified primers and sequenced. The miR-125b1 gene expression was analyzed by qRT-PCR using U6 as a control for constitutive gene expression. CTCF repressive histone marks abundance was evaluated by chromatin immunoprecipitation assays. RESULTS: The disruption of CTCF in breast cancer cells correlated with the incorporation of repressive histone marks such H3K9me3 and H3K27me3 as well as with aberrant DNA methylation patterns. To determine the effect of DNA methylation at the CpG island of miR-125b1 on the expression of this gene, we performed a qRT-PCR assay. We observed a significant reduction on the expression of miR-125b1 in cancer cells in comparison with controls, suggesting that DNA methylation at the CpG island might reduce miR-125b1 expression. These effects were observed in other gynecological cancers, including ovarian and cervical tumors. CONCLUSIONS: A reduction of miR-125b1 expression in cancers, correlated with methylation, repressive histone marks and loss of CTCF binding at the promoter region.
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spelling pubmed-32975142012-03-09 Disruption of CTCF at the miR-125b1 locus in gynecological cancers Soto-Reyes, Ernesto González-Barrios, Rodrigo Cisneros-Soberanis, Fernanda Herrera-Goepfert, Roberto Pérez, Víctor Cantú, David Prada, Diddier Castro, Clementina Recillas-Targa, Félix Herrera, Luis A BMC Cancer Research Article BACKGROUND: In cancer cells, transcriptional gene silencing has been associated with genetic and epigenetic defects. The disruption of DNA methylation patterns and covalent histone marks has been associated with cancer development. Until recently, microRNA (miRNA) gene silencing was not well understood. In particular, miR-125b1 has been suggested to be an miRNA with tumor suppressor activity, and it has been shown to be deregulated in various human cancers. In the present study, we evaluated the DNA methylation at the CpG island proximal to the transcription start site of miR-125b1 in cancer cell lines as well as in normal tissues and gynecological tumor samples. In addition, we analyzed the association of CTCF and covalent histone modifications at the miR-125b1 locus. METHODS: To assess the DNA methylation status of the miR-125b1, genomic DNA was transformed with sodium bisulfite, and then PCR-amplified with modified primers and sequenced. The miR-125b1 gene expression was analyzed by qRT-PCR using U6 as a control for constitutive gene expression. CTCF repressive histone marks abundance was evaluated by chromatin immunoprecipitation assays. RESULTS: The disruption of CTCF in breast cancer cells correlated with the incorporation of repressive histone marks such H3K9me3 and H3K27me3 as well as with aberrant DNA methylation patterns. To determine the effect of DNA methylation at the CpG island of miR-125b1 on the expression of this gene, we performed a qRT-PCR assay. We observed a significant reduction on the expression of miR-125b1 in cancer cells in comparison with controls, suggesting that DNA methylation at the CpG island might reduce miR-125b1 expression. These effects were observed in other gynecological cancers, including ovarian and cervical tumors. CONCLUSIONS: A reduction of miR-125b1 expression in cancers, correlated with methylation, repressive histone marks and loss of CTCF binding at the promoter region. BioMed Central 2012-01-25 /pmc/articles/PMC3297514/ /pubmed/22277129 http://dx.doi.org/10.1186/1471-2407-12-40 Text en Copyright ©2012 Soto-Reyes 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 Article
Soto-Reyes, Ernesto
González-Barrios, Rodrigo
Cisneros-Soberanis, Fernanda
Herrera-Goepfert, Roberto
Pérez, Víctor
Cantú, David
Prada, Diddier
Castro, Clementina
Recillas-Targa, Félix
Herrera, Luis A
Disruption of CTCF at the miR-125b1 locus in gynecological cancers
title Disruption of CTCF at the miR-125b1 locus in gynecological cancers
title_full Disruption of CTCF at the miR-125b1 locus in gynecological cancers
title_fullStr Disruption of CTCF at the miR-125b1 locus in gynecological cancers
title_full_unstemmed Disruption of CTCF at the miR-125b1 locus in gynecological cancers
title_short Disruption of CTCF at the miR-125b1 locus in gynecological cancers
title_sort disruption of ctcf at the mir-125b1 locus in gynecological cancers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3297514/
https://www.ncbi.nlm.nih.gov/pubmed/22277129
http://dx.doi.org/10.1186/1471-2407-12-40
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