Pairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake

Studying the contribution of pairs of genes to complex traits has been challenging. Here, the authors combine exome and genotype data with RNAi to screen for genetic interactions between 30 genes identified in lipid GWAS to hint at pairs whose joint modulation may improve lipid-lowering therapies.

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Autores principales: Magdalena Zimoń, Yunfeng Huang, Anthi Trasta, Aliaksandr Halavatyi, Jimmy Z. Liu, Chia-Yen Chen, Peter Blattmann, Bernd Klaus, Christopher D. Whelan, David Sexton, Sally John, Wolfgang Huber, Ellen A. Tsai, Rainer Pepperkok, Heiko Runz
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/2bb3a6e883434f35aa8c3f3734f6d85f
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spelling oai:doaj.org-article:2bb3a6e883434f35aa8c3f3734f6d85f2021-11-08T11:06:10ZPairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake10.1038/s41467-021-26761-32041-1723https://doaj.org/article/2bb3a6e883434f35aa8c3f3734f6d85f2021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-26761-3https://doaj.org/toc/2041-1723Studying the contribution of pairs of genes to complex traits has been challenging. Here, the authors combine exome and genotype data with RNAi to screen for genetic interactions between 30 genes identified in lipid GWAS to hint at pairs whose joint modulation may improve lipid-lowering therapies.Magdalena ZimońYunfeng HuangAnthi TrastaAliaksandr HalavatyiJimmy Z. LiuChia-Yen ChenPeter BlattmannBernd KlausChristopher D. WhelanDavid SextonSally JohnWolfgang HuberEllen A. TsaiRainer PepperkokHeiko RunzNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-16 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Magdalena Zimoń
Yunfeng Huang
Anthi Trasta
Aliaksandr Halavatyi
Jimmy Z. Liu
Chia-Yen Chen
Peter Blattmann
Bernd Klaus
Christopher D. Whelan
David Sexton
Sally John
Wolfgang Huber
Ellen A. Tsai
Rainer Pepperkok
Heiko Runz
Pairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake
description Studying the contribution of pairs of genes to complex traits has been challenging. Here, the authors combine exome and genotype data with RNAi to screen for genetic interactions between 30 genes identified in lipid GWAS to hint at pairs whose joint modulation may improve lipid-lowering therapies.
format article
author Magdalena Zimoń
Yunfeng Huang
Anthi Trasta
Aliaksandr Halavatyi
Jimmy Z. Liu
Chia-Yen Chen
Peter Blattmann
Bernd Klaus
Christopher D. Whelan
David Sexton
Sally John
Wolfgang Huber
Ellen A. Tsai
Rainer Pepperkok
Heiko Runz
author_facet Magdalena Zimoń
Yunfeng Huang
Anthi Trasta
Aliaksandr Halavatyi
Jimmy Z. Liu
Chia-Yen Chen
Peter Blattmann
Bernd Klaus
Christopher D. Whelan
David Sexton
Sally John
Wolfgang Huber
Ellen A. Tsai
Rainer Pepperkok
Heiko Runz
author_sort Magdalena Zimoń
title Pairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake
title_short Pairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake
title_full Pairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake
title_fullStr Pairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake
title_full_unstemmed Pairwise effects between lipid GWAS genes modulate lipid plasma levels and cellular uptake
title_sort pairwise effects between lipid gwas genes modulate lipid plasma levels and cellular uptake
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/2bb3a6e883434f35aa8c3f3734f6d85f
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