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DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development

The fibrinogen genes FGA, FGB and FGG show coordinated expression in hepatocytes. Understanding the underlying transcriptional regulation may elucidate how their tissue-specific expression is maintained and explain the high variability in fibrinogen blood levels. DNA methylation of CpG-poor gene pro...

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Autores principales: Vorjohann, Silja, Pitetti, Jean-Luc, Nef, Serge, Gonelle-Gispert, Carmen, Buhler, Leo, Fish, Richard J., Neerman-Arbez, Marguerite
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749180/
https://www.ncbi.nlm.nih.gov/pubmed/23991173
http://dx.doi.org/10.1371/journal.pone.0073089
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author Vorjohann, Silja
Pitetti, Jean-Luc
Nef, Serge
Gonelle-Gispert, Carmen
Buhler, Leo
Fish, Richard J.
Neerman-Arbez, Marguerite
author_facet Vorjohann, Silja
Pitetti, Jean-Luc
Nef, Serge
Gonelle-Gispert, Carmen
Buhler, Leo
Fish, Richard J.
Neerman-Arbez, Marguerite
author_sort Vorjohann, Silja
collection PubMed
description The fibrinogen genes FGA, FGB and FGG show coordinated expression in hepatocytes. Understanding the underlying transcriptional regulation may elucidate how their tissue-specific expression is maintained and explain the high variability in fibrinogen blood levels. DNA methylation of CpG-poor gene promoters is dynamic with low methylation correlating with tissue-specific gene expression but its direct effect on gene regulation as well as implications of non-promoter CpG methylation are not clear. Here we compared methylation of CpG sites throughout the fibrinogen gene cluster in human cells and mouse and zebrafish tissues. We observed low DNA methylation of the CpG-poor fibrinogen promoters and of additional regulatory elements (the liver enhancers CNC12 and PFE2) in fibrinogen-expressing samples. In a gene reporter assay, CpG-methylation in the FGA promoter reduced promoter activity, suggesting a repressive function for DNA methylation in the fibrinogen locus. In mouse and zebrafish livers we measured reductions in DNA methylation around fibrinogen genes during development that were preceded by increased fibrinogen expression and tri-methylation of Histone3 lysine4 (H3K4me3) in fibrinogen promoters. Our data support a model where changes in hepatic transcription factor expression and histone modification provide the switch for increased fibrinogen gene expression in the developing liver which is followed by reduction of CpG methylation.
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spelling pubmed-37491802013-08-29 DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development Vorjohann, Silja Pitetti, Jean-Luc Nef, Serge Gonelle-Gispert, Carmen Buhler, Leo Fish, Richard J. Neerman-Arbez, Marguerite PLoS One Research Article The fibrinogen genes FGA, FGB and FGG show coordinated expression in hepatocytes. Understanding the underlying transcriptional regulation may elucidate how their tissue-specific expression is maintained and explain the high variability in fibrinogen blood levels. DNA methylation of CpG-poor gene promoters is dynamic with low methylation correlating with tissue-specific gene expression but its direct effect on gene regulation as well as implications of non-promoter CpG methylation are not clear. Here we compared methylation of CpG sites throughout the fibrinogen gene cluster in human cells and mouse and zebrafish tissues. We observed low DNA methylation of the CpG-poor fibrinogen promoters and of additional regulatory elements (the liver enhancers CNC12 and PFE2) in fibrinogen-expressing samples. In a gene reporter assay, CpG-methylation in the FGA promoter reduced promoter activity, suggesting a repressive function for DNA methylation in the fibrinogen locus. In mouse and zebrafish livers we measured reductions in DNA methylation around fibrinogen genes during development that were preceded by increased fibrinogen expression and tri-methylation of Histone3 lysine4 (H3K4me3) in fibrinogen promoters. Our data support a model where changes in hepatic transcription factor expression and histone modification provide the switch for increased fibrinogen gene expression in the developing liver which is followed by reduction of CpG methylation. Public Library of Science 2013-08-21 /pmc/articles/PMC3749180/ /pubmed/23991173 http://dx.doi.org/10.1371/journal.pone.0073089 Text en © 2013 Vorjohann et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Vorjohann, Silja
Pitetti, Jean-Luc
Nef, Serge
Gonelle-Gispert, Carmen
Buhler, Leo
Fish, Richard J.
Neerman-Arbez, Marguerite
DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development
title DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development
title_full DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development
title_fullStr DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development
title_full_unstemmed DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development
title_short DNA Methylation Profiling of the Fibrinogen Gene Landscape in Human Cells and during Mouse and Zebrafish Development
title_sort dna methylation profiling of the fibrinogen gene landscape in human cells and during mouse and zebrafish development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3749180/
https://www.ncbi.nlm.nih.gov/pubmed/23991173
http://dx.doi.org/10.1371/journal.pone.0073089
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