Genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk

The authors provide a comprehensive, single base resolution view of association between genetic variation and DNA methylation in human brain. They also show that heritability attributed to schizophrenia GWAS-associated variants reflects the epigenetic plasticity of the brain.

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Autores principales: Kira A. Perzel Mandell, Nicholas J. Eagles, Richard Wilton, Amanda J. Price, Stephen A. Semick, Leonardo Collado-Torres, William S. Ulrich, Ran Tao, Shizhong Han, Alexander S. Szalay, Thomas M. Hyde, Joel E. Kleinman, Daniel R. Weinberger, Andrew E. Jaffe
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/c39209296bd643a888732cfc9a82670a
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spelling oai:doaj.org-article:c39209296bd643a888732cfc9a82670a2021-12-02T15:26:52ZGenome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk10.1038/s41467-021-25517-32041-1723https://doaj.org/article/c39209296bd643a888732cfc9a82670a2021-09-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-25517-3https://doaj.org/toc/2041-1723The authors provide a comprehensive, single base resolution view of association between genetic variation and DNA methylation in human brain. They also show that heritability attributed to schizophrenia GWAS-associated variants reflects the epigenetic plasticity of the brain.Kira A. Perzel MandellNicholas J. EaglesRichard WiltonAmanda J. PriceStephen A. SemickLeonardo Collado-TorresWilliam S. UlrichRan TaoShizhong HanAlexander S. SzalayThomas M. HydeJoel E. KleinmanDaniel R. WeinbergerAndrew E. JaffeNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-12 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Kira A. Perzel Mandell
Nicholas J. Eagles
Richard Wilton
Amanda J. Price
Stephen A. Semick
Leonardo Collado-Torres
William S. Ulrich
Ran Tao
Shizhong Han
Alexander S. Szalay
Thomas M. Hyde
Joel E. Kleinman
Daniel R. Weinberger
Andrew E. Jaffe
Genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk
description The authors provide a comprehensive, single base resolution view of association between genetic variation and DNA methylation in human brain. They also show that heritability attributed to schizophrenia GWAS-associated variants reflects the epigenetic plasticity of the brain.
format article
author Kira A. Perzel Mandell
Nicholas J. Eagles
Richard Wilton
Amanda J. Price
Stephen A. Semick
Leonardo Collado-Torres
William S. Ulrich
Ran Tao
Shizhong Han
Alexander S. Szalay
Thomas M. Hyde
Joel E. Kleinman
Daniel R. Weinberger
Andrew E. Jaffe
author_facet Kira A. Perzel Mandell
Nicholas J. Eagles
Richard Wilton
Amanda J. Price
Stephen A. Semick
Leonardo Collado-Torres
William S. Ulrich
Ran Tao
Shizhong Han
Alexander S. Szalay
Thomas M. Hyde
Joel E. Kleinman
Daniel R. Weinberger
Andrew E. Jaffe
author_sort Kira A. Perzel Mandell
title Genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk
title_short Genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk
title_full Genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk
title_fullStr Genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk
title_full_unstemmed Genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk
title_sort genome-wide sequencing-based identification of methylation quantitative trait loci and their role in schizophrenia risk
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/c39209296bd643a888732cfc9a82670a
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