Cargando…

Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification

Many GWAS have identified novel loci associated with common diseases, but have focused only on main effects of individual genetic variants rather than interactions with environmental factors (GxE). Identification of GxE interactions is particularly important for coronary heart disease (CHD), a major...

Descripción completa

Detalles Bibliográficos
Autores principales: Polfus, Linda M., Smith, Jennifer A., Shimmin, Lawrence C., Bielak, Lawrence F., Morrison, Alanna C., Kardia, Sharon L. R., Peyser, Patricia A., Hixson, James E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3789744/
https://www.ncbi.nlm.nih.gov/pubmed/24098343
http://dx.doi.org/10.1371/journal.pone.0074642
_version_ 1782286489231556608
author Polfus, Linda M.
Smith, Jennifer A.
Shimmin, Lawrence C.
Bielak, Lawrence F.
Morrison, Alanna C.
Kardia, Sharon L. R.
Peyser, Patricia A.
Hixson, James E.
author_facet Polfus, Linda M.
Smith, Jennifer A.
Shimmin, Lawrence C.
Bielak, Lawrence F.
Morrison, Alanna C.
Kardia, Sharon L. R.
Peyser, Patricia A.
Hixson, James E.
author_sort Polfus, Linda M.
collection PubMed
description Many GWAS have identified novel loci associated with common diseases, but have focused only on main effects of individual genetic variants rather than interactions with environmental factors (GxE). Identification of GxE interactions is particularly important for coronary heart disease (CHD), a major preventable source of morbidity and mortality with strong non-genetic risk factors. Atherosclerosis is the major cause of CHD, and coronary artery calcification (CAC) is directly correlated with quantity of coronary atherosclerotic plaque. In the current study, we tested for genetic variants influencing extent of CAC via interaction with smoking (GxS), by conducting a GxS discovery GWAS in Genetic Epidemiology Network of Arteriopathy (GENOA) sibships (N = 915 European Americans) followed by replication in Framingham Heart Study (FHS) sibships (N = 1025 European Americans). Generalized estimating equations accounted for the correlation within sibships in strata-specific groups of smokers and nonsmokers, as well as GxS interaction. Primary analysis found SNPs that showed suggestive associations (p≤10(−5)) in GENOA GWAS, but these index SNPs did not replicate in FHS. However, secondary analysis was able to replicate candidate gene regions in FHS using other SNPs (+/−250 kb of GENOA index SNP). In smoker and nonsmoker groups, replicated genes included TCF7L2 (p = 6.0×10(−5)) and WWOX (p = 4.5×10(−6)); and TNFRSF8 (p = 7.8×10(−5)), respectively. For GxS interactions, replicated genes included TBC1D4 (p = 6.9×10(−5)) and ADAMTS9 (P = 7.1×10(−5)). Interestingly, these genes are involved in inflammatory pathways mediated by the NF-κB axis. Since smoking is known to induce chronic and systemic inflammation, association of these genes likely reflects roles in CAC development via inflammatory pathways. Furthermore, the NF-κB axis regulates bone remodeling, a key physiological process in CAC development. In conclusion, GxS GWAS has yielded evidence for novel loci that are associated with CAC via interaction with smoking, providing promising new targets for future population-based and functional studies of CAC development.
format Online
Article
Text
id pubmed-3789744
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37897442013-10-04 Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification Polfus, Linda M. Smith, Jennifer A. Shimmin, Lawrence C. Bielak, Lawrence F. Morrison, Alanna C. Kardia, Sharon L. R. Peyser, Patricia A. Hixson, James E. PLoS One Research Article Many GWAS have identified novel loci associated with common diseases, but have focused only on main effects of individual genetic variants rather than interactions with environmental factors (GxE). Identification of GxE interactions is particularly important for coronary heart disease (CHD), a major preventable source of morbidity and mortality with strong non-genetic risk factors. Atherosclerosis is the major cause of CHD, and coronary artery calcification (CAC) is directly correlated with quantity of coronary atherosclerotic plaque. In the current study, we tested for genetic variants influencing extent of CAC via interaction with smoking (GxS), by conducting a GxS discovery GWAS in Genetic Epidemiology Network of Arteriopathy (GENOA) sibships (N = 915 European Americans) followed by replication in Framingham Heart Study (FHS) sibships (N = 1025 European Americans). Generalized estimating equations accounted for the correlation within sibships in strata-specific groups of smokers and nonsmokers, as well as GxS interaction. Primary analysis found SNPs that showed suggestive associations (p≤10(−5)) in GENOA GWAS, but these index SNPs did not replicate in FHS. However, secondary analysis was able to replicate candidate gene regions in FHS using other SNPs (+/−250 kb of GENOA index SNP). In smoker and nonsmoker groups, replicated genes included TCF7L2 (p = 6.0×10(−5)) and WWOX (p = 4.5×10(−6)); and TNFRSF8 (p = 7.8×10(−5)), respectively. For GxS interactions, replicated genes included TBC1D4 (p = 6.9×10(−5)) and ADAMTS9 (P = 7.1×10(−5)). Interestingly, these genes are involved in inflammatory pathways mediated by the NF-κB axis. Since smoking is known to induce chronic and systemic inflammation, association of these genes likely reflects roles in CAC development via inflammatory pathways. Furthermore, the NF-κB axis regulates bone remodeling, a key physiological process in CAC development. In conclusion, GxS GWAS has yielded evidence for novel loci that are associated with CAC via interaction with smoking, providing promising new targets for future population-based and functional studies of CAC development. Public Library of Science 2013-10-03 /pmc/articles/PMC3789744/ /pubmed/24098343 http://dx.doi.org/10.1371/journal.pone.0074642 Text en © 2013 Polfus et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Polfus, Linda M.
Smith, Jennifer A.
Shimmin, Lawrence C.
Bielak, Lawrence F.
Morrison, Alanna C.
Kardia, Sharon L. R.
Peyser, Patricia A.
Hixson, James E.
Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification
title Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification
title_full Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification
title_fullStr Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification
title_full_unstemmed Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification
title_short Genome-Wide Association Study of Gene by Smoking Interactions in Coronary Artery Calcification
title_sort genome-wide association study of gene by smoking interactions in coronary artery calcification
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3789744/
https://www.ncbi.nlm.nih.gov/pubmed/24098343
http://dx.doi.org/10.1371/journal.pone.0074642
work_keys_str_mv AT polfuslindam genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification
AT smithjennifera genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification
AT shimminlawrencec genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification
AT bielaklawrencef genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification
AT morrisonalannac genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification
AT kardiasharonlr genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification
AT peyserpatriciaa genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification
AT hixsonjamese genomewideassociationstudyofgenebysmokinginteractionsincoronaryarterycalcification