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Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient

The immunodeficiency, centromere instability and facial anomalies (ICF) syndrome is associated to mutations of the DNA methyl-transferase DNMT3B, resulting in a reduction of enzyme activity. Aberrant expression of immune system genes and hypomethylation of pericentromeric regions accompanied by chro...

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Autores principales: Heyn, Holger, Vidal, Enrique, Sayols, Sergi, Sanchez-Mut, Jose V., Moran, Sebastian, Medina, Ignacio, Sandoval, Juan, Simó-Riudalbas, Laia, Szczesna, Karolina, Huertas, Dori, Gatto, Sole, Matarazzo, Maria R., Dopazo, Joaquin, Esteller, Manel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Landes Bioscience 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3398983/
https://www.ncbi.nlm.nih.gov/pubmed/22595875
http://dx.doi.org/10.4161/epi.20523
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author Heyn, Holger
Vidal, Enrique
Sayols, Sergi
Sanchez-Mut, Jose V.
Moran, Sebastian
Medina, Ignacio
Sandoval, Juan
Simó-Riudalbas, Laia
Szczesna, Karolina
Huertas, Dori
Gatto, Sole
Matarazzo, Maria R.
Dopazo, Joaquin
Esteller, Manel
author_facet Heyn, Holger
Vidal, Enrique
Sayols, Sergi
Sanchez-Mut, Jose V.
Moran, Sebastian
Medina, Ignacio
Sandoval, Juan
Simó-Riudalbas, Laia
Szczesna, Karolina
Huertas, Dori
Gatto, Sole
Matarazzo, Maria R.
Dopazo, Joaquin
Esteller, Manel
author_sort Heyn, Holger
collection PubMed
description The immunodeficiency, centromere instability and facial anomalies (ICF) syndrome is associated to mutations of the DNA methyl-transferase DNMT3B, resulting in a reduction of enzyme activity. Aberrant expression of immune system genes and hypomethylation of pericentromeric regions accompanied by chromosomal instability were determined as alterations driving the disease phenotype. However, so far only technologies capable to analyze single loci were applied to determine epigenetic alterations in ICF patients. In the current study, we performed whole-genome bisulphite sequencing to assess alteration in DNA methylation at base pair resolution. Genome-wide we detected a decrease of methylation level of 42%, with the most profound changes occurring in inactive heterochromatic regions, satellite repeats and transposons. Interestingly, transcriptional active loci and ribosomal RNA repeats escaped global hypomethylation. Despite a genome-wide loss of DNA methylation the epigenetic landscape and crucial regulatory structures were conserved. Remarkably, we revealed a mislocated activity of mutant DNMT3B to H3K4me1 loci resulting in hypermethylation of active promoters. Functionally, we could associate alterations in promoter methylation with the ICF syndrome immunodeficient phenotype by detecting changes in genes related to the B-cell receptor mediated maturation pathway.
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spelling pubmed-33989832012-07-18 Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient Heyn, Holger Vidal, Enrique Sayols, Sergi Sanchez-Mut, Jose V. Moran, Sebastian Medina, Ignacio Sandoval, Juan Simó-Riudalbas, Laia Szczesna, Karolina Huertas, Dori Gatto, Sole Matarazzo, Maria R. Dopazo, Joaquin Esteller, Manel Epigenetics Research Paper The immunodeficiency, centromere instability and facial anomalies (ICF) syndrome is associated to mutations of the DNA methyl-transferase DNMT3B, resulting in a reduction of enzyme activity. Aberrant expression of immune system genes and hypomethylation of pericentromeric regions accompanied by chromosomal instability were determined as alterations driving the disease phenotype. However, so far only technologies capable to analyze single loci were applied to determine epigenetic alterations in ICF patients. In the current study, we performed whole-genome bisulphite sequencing to assess alteration in DNA methylation at base pair resolution. Genome-wide we detected a decrease of methylation level of 42%, with the most profound changes occurring in inactive heterochromatic regions, satellite repeats and transposons. Interestingly, transcriptional active loci and ribosomal RNA repeats escaped global hypomethylation. Despite a genome-wide loss of DNA methylation the epigenetic landscape and crucial regulatory structures were conserved. Remarkably, we revealed a mislocated activity of mutant DNMT3B to H3K4me1 loci resulting in hypermethylation of active promoters. Functionally, we could associate alterations in promoter methylation with the ICF syndrome immunodeficient phenotype by detecting changes in genes related to the B-cell receptor mediated maturation pathway. Landes Bioscience 2012-06-01 /pmc/articles/PMC3398983/ /pubmed/22595875 http://dx.doi.org/10.4161/epi.20523 Text en Copyright © 2012 Landes Bioscience http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article licensed under a Creative Commons Attribution-NonCommercial 3.0 Unported License. The article may be redistributed, reproduced, and reused for non-commercial purposes, provided the original source is properly cited.
spellingShingle Research Paper
Heyn, Holger
Vidal, Enrique
Sayols, Sergi
Sanchez-Mut, Jose V.
Moran, Sebastian
Medina, Ignacio
Sandoval, Juan
Simó-Riudalbas, Laia
Szczesna, Karolina
Huertas, Dori
Gatto, Sole
Matarazzo, Maria R.
Dopazo, Joaquin
Esteller, Manel
Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient
title Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient
title_full Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient
title_fullStr Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient
title_full_unstemmed Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient
title_short Whole-genome bisulfite DNA sequencing of a DNMT3B mutant patient
title_sort whole-genome bisulfite dna sequencing of a dnmt3b mutant patient
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3398983/
https://www.ncbi.nlm.nih.gov/pubmed/22595875
http://dx.doi.org/10.4161/epi.20523
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