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Interactions between genetic variation and cellular environment in skeletal muscle gene expression

From whole organisms to individual cells, responses to environmental conditions are influenced by genetic makeup, where the effect of genetic variation on a trait depends on the environmental context. RNA-sequencing quantifies gene expression as a molecular trait, and is capable of capturing both ge...

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Autores principales: Taylor, D. Leland, Knowles, David A., Scott, Laura J., Ramirez, Andrea H., Casale, Francesco Paolo, Wolford, Brooke N., Guan, Li, Varshney, Arushi, Albanus, Ricardo D’Oliveira, Parker, Stephen C. J., Narisu, Narisu, Chines, Peter S., Erdos, Michael R., Welch, Ryan P., Kinnunen, Leena, Saramies, Jouko, Sundvall, Jouko, Lakka, Timo A., Laakso, Markku, Tuomilehto, Jaakko, Koistinen, Heikki A., Stegle, Oliver, Boehnke, Michael, Birney, Ewan, Collins, Francis S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5901994/
https://www.ncbi.nlm.nih.gov/pubmed/29659628
http://dx.doi.org/10.1371/journal.pone.0195788
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author Taylor, D. Leland
Knowles, David A.
Scott, Laura J.
Ramirez, Andrea H.
Casale, Francesco Paolo
Wolford, Brooke N.
Guan, Li
Varshney, Arushi
Albanus, Ricardo D’Oliveira
Parker, Stephen C. J.
Narisu, Narisu
Chines, Peter S.
Erdos, Michael R.
Welch, Ryan P.
Kinnunen, Leena
Saramies, Jouko
Sundvall, Jouko
Lakka, Timo A.
Laakso, Markku
Tuomilehto, Jaakko
Koistinen, Heikki A.
Stegle, Oliver
Boehnke, Michael
Birney, Ewan
Collins, Francis S.
author_facet Taylor, D. Leland
Knowles, David A.
Scott, Laura J.
Ramirez, Andrea H.
Casale, Francesco Paolo
Wolford, Brooke N.
Guan, Li
Varshney, Arushi
Albanus, Ricardo D’Oliveira
Parker, Stephen C. J.
Narisu, Narisu
Chines, Peter S.
Erdos, Michael R.
Welch, Ryan P.
Kinnunen, Leena
Saramies, Jouko
Sundvall, Jouko
Lakka, Timo A.
Laakso, Markku
Tuomilehto, Jaakko
Koistinen, Heikki A.
Stegle, Oliver
Boehnke, Michael
Birney, Ewan
Collins, Francis S.
author_sort Taylor, D. Leland
collection PubMed
description From whole organisms to individual cells, responses to environmental conditions are influenced by genetic makeup, where the effect of genetic variation on a trait depends on the environmental context. RNA-sequencing quantifies gene expression as a molecular trait, and is capable of capturing both genetic and environmental effects. In this study, we explore opportunities of using allele-specific expression (ASE) to discover cis-acting genotype-environment interactions (GxE)—genetic effects on gene expression that depend on an environmental condition. Treating 17 common, clinical traits as approximations of the cellular environment of 267 skeletal muscle biopsies, we identify 10 candidate environmental response expression quantitative trait loci (reQTLs) across 6 traits (12 unique gene-environment trait pairs; 10% FDR per trait) including sex, systolic blood pressure, and low-density lipoprotein cholesterol. Although using ASE is in principle a promising approach to detect GxE effects, replication of such signals can be challenging as validation requires harmonization of environmental traits across cohorts and a sufficient sampling of heterozygotes for a transcribed SNP. Comprehensive discovery and replication will require large human transcriptome datasets, or the integration of multiple transcribed SNPs, coupled with standardized clinical phenotyping.
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spelling pubmed-59019942018-05-06 Interactions between genetic variation and cellular environment in skeletal muscle gene expression Taylor, D. Leland Knowles, David A. Scott, Laura J. Ramirez, Andrea H. Casale, Francesco Paolo Wolford, Brooke N. Guan, Li Varshney, Arushi Albanus, Ricardo D’Oliveira Parker, Stephen C. J. Narisu, Narisu Chines, Peter S. Erdos, Michael R. Welch, Ryan P. Kinnunen, Leena Saramies, Jouko Sundvall, Jouko Lakka, Timo A. Laakso, Markku Tuomilehto, Jaakko Koistinen, Heikki A. Stegle, Oliver Boehnke, Michael Birney, Ewan Collins, Francis S. PLoS One Research Article From whole organisms to individual cells, responses to environmental conditions are influenced by genetic makeup, where the effect of genetic variation on a trait depends on the environmental context. RNA-sequencing quantifies gene expression as a molecular trait, and is capable of capturing both genetic and environmental effects. In this study, we explore opportunities of using allele-specific expression (ASE) to discover cis-acting genotype-environment interactions (GxE)—genetic effects on gene expression that depend on an environmental condition. Treating 17 common, clinical traits as approximations of the cellular environment of 267 skeletal muscle biopsies, we identify 10 candidate environmental response expression quantitative trait loci (reQTLs) across 6 traits (12 unique gene-environment trait pairs; 10% FDR per trait) including sex, systolic blood pressure, and low-density lipoprotein cholesterol. Although using ASE is in principle a promising approach to detect GxE effects, replication of such signals can be challenging as validation requires harmonization of environmental traits across cohorts and a sufficient sampling of heterozygotes for a transcribed SNP. Comprehensive discovery and replication will require large human transcriptome datasets, or the integration of multiple transcribed SNPs, coupled with standardized clinical phenotyping. Public Library of Science 2018-04-16 /pmc/articles/PMC5901994/ /pubmed/29659628 http://dx.doi.org/10.1371/journal.pone.0195788 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Taylor, D. Leland
Knowles, David A.
Scott, Laura J.
Ramirez, Andrea H.
Casale, Francesco Paolo
Wolford, Brooke N.
Guan, Li
Varshney, Arushi
Albanus, Ricardo D’Oliveira
Parker, Stephen C. J.
Narisu, Narisu
Chines, Peter S.
Erdos, Michael R.
Welch, Ryan P.
Kinnunen, Leena
Saramies, Jouko
Sundvall, Jouko
Lakka, Timo A.
Laakso, Markku
Tuomilehto, Jaakko
Koistinen, Heikki A.
Stegle, Oliver
Boehnke, Michael
Birney, Ewan
Collins, Francis S.
Interactions between genetic variation and cellular environment in skeletal muscle gene expression
title Interactions between genetic variation and cellular environment in skeletal muscle gene expression
title_full Interactions between genetic variation and cellular environment in skeletal muscle gene expression
title_fullStr Interactions between genetic variation and cellular environment in skeletal muscle gene expression
title_full_unstemmed Interactions between genetic variation and cellular environment in skeletal muscle gene expression
title_short Interactions between genetic variation and cellular environment in skeletal muscle gene expression
title_sort interactions between genetic variation and cellular environment in skeletal muscle gene expression
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5901994/
https://www.ncbi.nlm.nih.gov/pubmed/29659628
http://dx.doi.org/10.1371/journal.pone.0195788
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