An exome array study of the plasma metabolome

Several GWAS have identified many common variants associated with blood metabolites. Here, the authors use an exome array to identify low frequency, potentially functional variants that impact human metabolism.

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Autores principales: Eugene P. Rhee, Qiong Yang, Bing Yu, Xuan Liu, Susan Cheng, Amy Deik, Kerry A. Pierce, Kevin Bullock, Jennifer E. Ho, Daniel Levy, Jose C. Florez, Sek Kathiresan, Martin G. Larson, Ramachandran S. Vasan, Clary B. Clish, Thomas J. Wang, Eric Boerwinkle, Christopher J. O’Donnell, Robert E. Gerszten
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2016
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Acceso en línea:https://doaj.org/article/2656afb9eb474ee0a0e2803a09511c00
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spelling oai:doaj.org-article:2656afb9eb474ee0a0e2803a09511c002021-12-02T17:33:22ZAn exome array study of the plasma metabolome10.1038/ncomms123602041-1723https://doaj.org/article/2656afb9eb474ee0a0e2803a09511c002016-07-01T00:00:00Zhttps://doi.org/10.1038/ncomms12360https://doaj.org/toc/2041-1723Several GWAS have identified many common variants associated with blood metabolites. Here, the authors use an exome array to identify low frequency, potentially functional variants that impact human metabolism.Eugene P. RheeQiong YangBing YuXuan LiuSusan ChengAmy DeikKerry A. PierceKevin BullockJennifer E. HoDaniel LevyJose C. FlorezSek KathiresanMartin G. LarsonRamachandran S. VasanClary B. ClishThomas J. WangEric BoerwinkleChristopher J. O’DonnellRobert E. GersztenNature PortfolioarticleScienceQENNature Communications, Vol 7, Iss 1, Pp 1-7 (2016)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Eugene P. Rhee
Qiong Yang
Bing Yu
Xuan Liu
Susan Cheng
Amy Deik
Kerry A. Pierce
Kevin Bullock
Jennifer E. Ho
Daniel Levy
Jose C. Florez
Sek Kathiresan
Martin G. Larson
Ramachandran S. Vasan
Clary B. Clish
Thomas J. Wang
Eric Boerwinkle
Christopher J. O’Donnell
Robert E. Gerszten
An exome array study of the plasma metabolome
description Several GWAS have identified many common variants associated with blood metabolites. Here, the authors use an exome array to identify low frequency, potentially functional variants that impact human metabolism.
format article
author Eugene P. Rhee
Qiong Yang
Bing Yu
Xuan Liu
Susan Cheng
Amy Deik
Kerry A. Pierce
Kevin Bullock
Jennifer E. Ho
Daniel Levy
Jose C. Florez
Sek Kathiresan
Martin G. Larson
Ramachandran S. Vasan
Clary B. Clish
Thomas J. Wang
Eric Boerwinkle
Christopher J. O’Donnell
Robert E. Gerszten
author_facet Eugene P. Rhee
Qiong Yang
Bing Yu
Xuan Liu
Susan Cheng
Amy Deik
Kerry A. Pierce
Kevin Bullock
Jennifer E. Ho
Daniel Levy
Jose C. Florez
Sek Kathiresan
Martin G. Larson
Ramachandran S. Vasan
Clary B. Clish
Thomas J. Wang
Eric Boerwinkle
Christopher J. O’Donnell
Robert E. Gerszten
author_sort Eugene P. Rhee
title An exome array study of the plasma metabolome
title_short An exome array study of the plasma metabolome
title_full An exome array study of the plasma metabolome
title_fullStr An exome array study of the plasma metabolome
title_full_unstemmed An exome array study of the plasma metabolome
title_sort exome array study of the plasma metabolome
publisher Nature Portfolio
publishDate 2016
url https://doaj.org/article/2656afb9eb474ee0a0e2803a09511c00
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