Genome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease
Genetic variation can influence levels of disease-related plasma proteins and, thus, contribute to the pathogenesis of complex diseases. Here, the authors perform genome-wide QTL analysis for 71 plasma proteins to identify causal proteins for coronary heart disease and provide a molecular QTL browse...
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Nature Portfolio
2018
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oai:doaj.org-article:cae1352d0a9c4818b111c7a3955ca2ac2021-12-02T15:34:48ZGenome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease10.1038/s41467-018-05512-x2041-1723https://doaj.org/article/cae1352d0a9c4818b111c7a3955ca2ac2018-08-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-05512-xhttps://doaj.org/toc/2041-1723Genetic variation can influence levels of disease-related plasma proteins and, thus, contribute to the pathogenesis of complex diseases. Here, the authors perform genome-wide QTL analysis for 71 plasma proteins to identify causal proteins for coronary heart disease and provide a molecular QTL browser.Chen YaoGeorge ChenCi SongJoshua KeefeMichael MendelsonTianxiao HuanBenjamin B. SunAnnika LaserJoseph C. MaranvilleHongsheng WuJennifer E. HoPaul CourchesneAsya LyassMartin G. LarsonChristian GiegerJohannes GraumannAndrew D. JohnsonJohn DaneshHeiko RunzShih-Jen HwangChunyu LiuAdam S. ButterworthKarsten SuhreDaniel LevyNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018) |
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DOAJ |
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DOAJ |
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topic |
Science Q |
spellingShingle |
Science Q Chen Yao George Chen Ci Song Joshua Keefe Michael Mendelson Tianxiao Huan Benjamin B. Sun Annika Laser Joseph C. Maranville Hongsheng Wu Jennifer E. Ho Paul Courchesne Asya Lyass Martin G. Larson Christian Gieger Johannes Graumann Andrew D. Johnson John Danesh Heiko Runz Shih-Jen Hwang Chunyu Liu Adam S. Butterworth Karsten Suhre Daniel Levy Genome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease |
description |
Genetic variation can influence levels of disease-related plasma proteins and, thus, contribute to the pathogenesis of complex diseases. Here, the authors perform genome-wide QTL analysis for 71 plasma proteins to identify causal proteins for coronary heart disease and provide a molecular QTL browser. |
format |
article |
author |
Chen Yao George Chen Ci Song Joshua Keefe Michael Mendelson Tianxiao Huan Benjamin B. Sun Annika Laser Joseph C. Maranville Hongsheng Wu Jennifer E. Ho Paul Courchesne Asya Lyass Martin G. Larson Christian Gieger Johannes Graumann Andrew D. Johnson John Danesh Heiko Runz Shih-Jen Hwang Chunyu Liu Adam S. Butterworth Karsten Suhre Daniel Levy |
author_facet |
Chen Yao George Chen Ci Song Joshua Keefe Michael Mendelson Tianxiao Huan Benjamin B. Sun Annika Laser Joseph C. Maranville Hongsheng Wu Jennifer E. Ho Paul Courchesne Asya Lyass Martin G. Larson Christian Gieger Johannes Graumann Andrew D. Johnson John Danesh Heiko Runz Shih-Jen Hwang Chunyu Liu Adam S. Butterworth Karsten Suhre Daniel Levy |
author_sort |
Chen Yao |
title |
Genome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease |
title_short |
Genome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease |
title_full |
Genome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease |
title_fullStr |
Genome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease |
title_full_unstemmed |
Genome‐wide mapping of plasma protein QTLs identifies putatively causal genes and pathways for cardiovascular disease |
title_sort |
genome‐wide mapping of plasma protein qtls identifies putatively causal genes and pathways for cardiovascular disease |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/cae1352d0a9c4818b111c7a3955ca2ac |
work_keys_str_mv |
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