A meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex

Although epigenome-wide association studies of Alzheimer’s disease have highlighted neuropathology-associated DNA methylation differences, previous studies have been limited in sample size and brain region used. Here, the authors combine data from six DNA methylomic studies of Alzheimer’s disease (N...

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Autores principales: Rebecca G. Smith, Ehsan Pishva, Gemma Shireby, Adam R. Smith, Janou A. Y. Roubroeks, Eilis Hannon, Gregory Wheildon, Diego Mastroeni, Gilles Gasparoni, Matthias Riemenschneider, Armin Giese, Andrew J. Sharp, Leonard Schalkwyk, Vahram Haroutunian, Wolfgang Viechtbauer, Daniel L. A. van den Hove, Michael Weedon, Danielle Brokaw, Paul T. Francis, Alan J. Thomas, Seth Love, Kevin Morgan, Jörn Walter, Paul D. Coleman, David A. Bennett, Philip L. De Jager, Jonathan Mill, Katie Lunnon
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/dd2f5bd2ef1b4cbabe97720ed844e0d6
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spelling oai:doaj.org-article:dd2f5bd2ef1b4cbabe97720ed844e0d62021-12-02T17:47:02ZA meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex10.1038/s41467-021-23243-42041-1723https://doaj.org/article/dd2f5bd2ef1b4cbabe97720ed844e0d62021-06-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-23243-4https://doaj.org/toc/2041-1723Although epigenome-wide association studies of Alzheimer’s disease have highlighted neuropathology-associated DNA methylation differences, previous studies have been limited in sample size and brain region used. Here, the authors combine data from six DNA methylomic studies of Alzheimer’s disease (N = 1453 unique individuals) to identify differentially methylated loci across cortex.Rebecca G. SmithEhsan PishvaGemma ShirebyAdam R. SmithJanou A. Y. RoubroeksEilis HannonGregory WheildonDiego MastroeniGilles GasparoniMatthias RiemenschneiderArmin GieseAndrew J. SharpLeonard SchalkwykVahram HaroutunianWolfgang ViechtbauerDaniel L. A. van den HoveMichael WeedonDanielle BrokawPaul T. FrancisAlan J. ThomasSeth LoveKevin MorganJörn WalterPaul D. ColemanDavid A. BennettPhilip L. De JagerJonathan MillKatie LunnonNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Rebecca G. Smith
Ehsan Pishva
Gemma Shireby
Adam R. Smith
Janou A. Y. Roubroeks
Eilis Hannon
Gregory Wheildon
Diego Mastroeni
Gilles Gasparoni
Matthias Riemenschneider
Armin Giese
Andrew J. Sharp
Leonard Schalkwyk
Vahram Haroutunian
Wolfgang Viechtbauer
Daniel L. A. van den Hove
Michael Weedon
Danielle Brokaw
Paul T. Francis
Alan J. Thomas
Seth Love
Kevin Morgan
Jörn Walter
Paul D. Coleman
David A. Bennett
Philip L. De Jager
Jonathan Mill
Katie Lunnon
A meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex
description Although epigenome-wide association studies of Alzheimer’s disease have highlighted neuropathology-associated DNA methylation differences, previous studies have been limited in sample size and brain region used. Here, the authors combine data from six DNA methylomic studies of Alzheimer’s disease (N = 1453 unique individuals) to identify differentially methylated loci across cortex.
format article
author Rebecca G. Smith
Ehsan Pishva
Gemma Shireby
Adam R. Smith
Janou A. Y. Roubroeks
Eilis Hannon
Gregory Wheildon
Diego Mastroeni
Gilles Gasparoni
Matthias Riemenschneider
Armin Giese
Andrew J. Sharp
Leonard Schalkwyk
Vahram Haroutunian
Wolfgang Viechtbauer
Daniel L. A. van den Hove
Michael Weedon
Danielle Brokaw
Paul T. Francis
Alan J. Thomas
Seth Love
Kevin Morgan
Jörn Walter
Paul D. Coleman
David A. Bennett
Philip L. De Jager
Jonathan Mill
Katie Lunnon
author_facet Rebecca G. Smith
Ehsan Pishva
Gemma Shireby
Adam R. Smith
Janou A. Y. Roubroeks
Eilis Hannon
Gregory Wheildon
Diego Mastroeni
Gilles Gasparoni
Matthias Riemenschneider
Armin Giese
Andrew J. Sharp
Leonard Schalkwyk
Vahram Haroutunian
Wolfgang Viechtbauer
Daniel L. A. van den Hove
Michael Weedon
Danielle Brokaw
Paul T. Francis
Alan J. Thomas
Seth Love
Kevin Morgan
Jörn Walter
Paul D. Coleman
David A. Bennett
Philip L. De Jager
Jonathan Mill
Katie Lunnon
author_sort Rebecca G. Smith
title A meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex
title_short A meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex
title_full A meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex
title_fullStr A meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex
title_full_unstemmed A meta-analysis of epigenome-wide association studies in Alzheimer’s disease highlights novel differentially methylated loci across cortex
title_sort meta-analysis of epigenome-wide association studies in alzheimer’s disease highlights novel differentially methylated loci across cortex
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/dd2f5bd2ef1b4cbabe97720ed844e0d6
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