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Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus

Recent multi-dimensional approaches to the study of complex disease have revealed powerful insights into how genetic and epigenetic factors may underlie their aetiopathogenesis. We examined genotype-epigenotype interactions in the context of Type 2 Diabetes (T2D), focussing on known regions of genom...

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Autores principales: Bell, Christopher G., Finer, Sarah, Lindgren, Cecilia M., Wilson, Gareth A., Rakyan, Vardhman K., Teschendorff, Andrew E., Akan, Pelin, Stupka, Elia, Down, Thomas A., Prokopenko, Inga, Morison, Ian M., Mill, Jonathan, Pidsley, Ruth, Deloukas, Panos, Frayling, Timothy M., Hattersley, Andrew T., McCarthy, Mark I., Beck, Stephan, Hitman, Graham A.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2987816/
https://www.ncbi.nlm.nih.gov/pubmed/21124985
http://dx.doi.org/10.1371/journal.pone.0014040
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author Bell, Christopher G.
Finer, Sarah
Lindgren, Cecilia M.
Wilson, Gareth A.
Rakyan, Vardhman K.
Teschendorff, Andrew E.
Akan, Pelin
Stupka, Elia
Down, Thomas A.
Prokopenko, Inga
Morison, Ian M.
Mill, Jonathan
Pidsley, Ruth
Deloukas, Panos
Frayling, Timothy M.
Hattersley, Andrew T.
McCarthy, Mark I.
Beck, Stephan
Hitman, Graham A.
author_facet Bell, Christopher G.
Finer, Sarah
Lindgren, Cecilia M.
Wilson, Gareth A.
Rakyan, Vardhman K.
Teschendorff, Andrew E.
Akan, Pelin
Stupka, Elia
Down, Thomas A.
Prokopenko, Inga
Morison, Ian M.
Mill, Jonathan
Pidsley, Ruth
Deloukas, Panos
Frayling, Timothy M.
Hattersley, Andrew T.
McCarthy, Mark I.
Beck, Stephan
Hitman, Graham A.
author_sort Bell, Christopher G.
collection PubMed
description Recent multi-dimensional approaches to the study of complex disease have revealed powerful insights into how genetic and epigenetic factors may underlie their aetiopathogenesis. We examined genotype-epigenotype interactions in the context of Type 2 Diabetes (T2D), focussing on known regions of genomic susceptibility. We assayed DNA methylation in 60 females, stratified according to disease susceptibility haplotype using previously identified association loci. CpG methylation was assessed using methylated DNA immunoprecipitation on a targeted array (MeDIP-chip) and absolute methylation values were estimated using a Bayesian algorithm (BATMAN). Absolute methylation levels were quantified across LD blocks, and we identified increased DNA methylation on the FTO obesity susceptibility haplotype, tagged by the rs8050136 risk allele A (p = 9.40×10(−4), permutation p = 1.0×10(−3)). Further analysis across the 46 kb LD block using sliding windows localised the most significant difference to be within a 7.7 kb region (p = 1.13×10(−7)). Sequence level analysis, followed by pyrosequencing validation, revealed that the methylation difference was driven by the co-ordinated phase of CpG-creating SNPs across the risk haplotype. This 7.7 kb region of haplotype-specific methylation (HSM), encapsulates a Highly Conserved Non-Coding Element (HCNE) that has previously been validated as a long-range enhancer, supported by the histone H3K4me1 enhancer signature. This study demonstrates that integration of Genome-Wide Association (GWA) SNP and epigenomic DNA methylation data can identify potential novel genotype-epigenotype interactions within disease-associated loci, thus providing a novel route to aid unravelling common complex diseases.
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spelling pubmed-29878162010-12-01 Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus Bell, Christopher G. Finer, Sarah Lindgren, Cecilia M. Wilson, Gareth A. Rakyan, Vardhman K. Teschendorff, Andrew E. Akan, Pelin Stupka, Elia Down, Thomas A. Prokopenko, Inga Morison, Ian M. Mill, Jonathan Pidsley, Ruth Deloukas, Panos Frayling, Timothy M. Hattersley, Andrew T. McCarthy, Mark I. Beck, Stephan Hitman, Graham A. PLoS One Research Article Recent multi-dimensional approaches to the study of complex disease have revealed powerful insights into how genetic and epigenetic factors may underlie their aetiopathogenesis. We examined genotype-epigenotype interactions in the context of Type 2 Diabetes (T2D), focussing on known regions of genomic susceptibility. We assayed DNA methylation in 60 females, stratified according to disease susceptibility haplotype using previously identified association loci. CpG methylation was assessed using methylated DNA immunoprecipitation on a targeted array (MeDIP-chip) and absolute methylation values were estimated using a Bayesian algorithm (BATMAN). Absolute methylation levels were quantified across LD blocks, and we identified increased DNA methylation on the FTO obesity susceptibility haplotype, tagged by the rs8050136 risk allele A (p = 9.40×10(−4), permutation p = 1.0×10(−3)). Further analysis across the 46 kb LD block using sliding windows localised the most significant difference to be within a 7.7 kb region (p = 1.13×10(−7)). Sequence level analysis, followed by pyrosequencing validation, revealed that the methylation difference was driven by the co-ordinated phase of CpG-creating SNPs across the risk haplotype. This 7.7 kb region of haplotype-specific methylation (HSM), encapsulates a Highly Conserved Non-Coding Element (HCNE) that has previously been validated as a long-range enhancer, supported by the histone H3K4me1 enhancer signature. This study demonstrates that integration of Genome-Wide Association (GWA) SNP and epigenomic DNA methylation data can identify potential novel genotype-epigenotype interactions within disease-associated loci, thus providing a novel route to aid unravelling common complex diseases. Public Library of Science 2010-11-18 /pmc/articles/PMC2987816/ /pubmed/21124985 http://dx.doi.org/10.1371/journal.pone.0014040 Text en Bell 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
Bell, Christopher G.
Finer, Sarah
Lindgren, Cecilia M.
Wilson, Gareth A.
Rakyan, Vardhman K.
Teschendorff, Andrew E.
Akan, Pelin
Stupka, Elia
Down, Thomas A.
Prokopenko, Inga
Morison, Ian M.
Mill, Jonathan
Pidsley, Ruth
Deloukas, Panos
Frayling, Timothy M.
Hattersley, Andrew T.
McCarthy, Mark I.
Beck, Stephan
Hitman, Graham A.
Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus
title Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus
title_full Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus
title_fullStr Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus
title_full_unstemmed Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus
title_short Integrated Genetic and Epigenetic Analysis Identifies Haplotype-Specific Methylation in the FTO Type 2 Diabetes and Obesity Susceptibility Locus
title_sort integrated genetic and epigenetic analysis identifies haplotype-specific methylation in the fto type 2 diabetes and obesity susceptibility locus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2987816/
https://www.ncbi.nlm.nih.gov/pubmed/21124985
http://dx.doi.org/10.1371/journal.pone.0014040
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