Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]

Recent genome-wide association studies (GWAS) have identified 35 loci that significantly associate with coronary artery disease (CAD) susceptibility. The majority of the genes represented in these loci have not previously been studied in the context of atherosclerosis. To characterize the roles of t...

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Main Authors: Ayca Erbilgin, Mete Civelek, Casey E. Romanoski, Calvin Pan, Raffi Hagopian, Judith A. Berliner, Aldons J. Lusis
Format: Article
Language:English
Published: Elsevier 2013-07-01
Series:Journal of Lipid Research
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0022227520421376
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spelling doaj-c930f977572e488e8d37de0072ca9f492021-04-28T06:05:46ZengElsevierJournal of Lipid Research0022-22752013-07-0154718941905Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]Ayca Erbilgin0Mete Civelek1Casey E. Romanoski2Calvin Pan3Raffi Hagopian4Judith A. Berliner5Aldons J. Lusis6Departments of Microbiology, Immunology & Molecular Genetics, David Geffen School of Medicine, Los Angeles, CAMedicine, David Geffen School of Medicine, Los Angeles, CAHuman Genetics, and David Geffen School of Medicine, Los Angeles, CAMedicine, David Geffen School of Medicine, Los Angeles, CAMedicine, David Geffen School of Medicine, Los Angeles, CAPathology and Laboratory Medicine, David Geffen School of Medicine, Los Angeles, CATo whom correspondence should be addressed jlusis@mednet.ucla.edu; Departments of Microbiology, Immunology & Molecular Genetics, David Geffen School of Medicine, Los Angeles, CA; Medicine, David Geffen School of Medicine, Los Angeles, CA; Human Genetics, and David Geffen School of Medicine, Los Angeles, CA; To whom correspondence should be addressed jlusis@mednet.ucla.eduRecent genome-wide association studies (GWAS) have identified 35 loci that significantly associate with coronary artery disease (CAD) susceptibility. The majority of the genes represented in these loci have not previously been studied in the context of atherosclerosis. To characterize the roles of these candidate genes in the vessel wall, we determined their expression levels in endothelial, smooth muscle, and macrophage cells isolated from healthy, prelesioned, and lesioned mouse aortas. We also performed expression quantitative locus (eQTL) mapping of these genes in human endothelial cells under control and proatherogenic conditions. Of the 57 genes studied, 31 were differentially expressed in one or more cell types in disease state in mice, and the expression levels of 8 were significantly associated with the CAD SNPs in human cells, 7 of which were also differentially expressed in mice. By integrating human and mouse results, we predict that PPAP2B, GALNT4, MAPKAPK5, TCTN1, SRR, SNF8, and ICAM1 play a causal role in the susceptibility to atherosclerosis through a role in the vasculature. Additionally, we highlight the genetic complexity of a subset of CAD loci through the differential expression of multiple candidate genes per locus and the involvement of genes that lie outside linkage disequilibrium blocks.http://www.sciencedirect.com/science/article/pii/S0022227520421376coronary artery diseasegenome-wide association studyatherosclerosisgeneticsendotheliumsmooth muscle cells
collection DOAJ
language English
format Article
sources DOAJ
author Ayca Erbilgin
Mete Civelek
Casey E. Romanoski
Calvin Pan
Raffi Hagopian
Judith A. Berliner
Aldons J. Lusis
spellingShingle Ayca Erbilgin
Mete Civelek
Casey E. Romanoski
Calvin Pan
Raffi Hagopian
Judith A. Berliner
Aldons J. Lusis
Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]
Journal of Lipid Research
coronary artery disease
genome-wide association study
atherosclerosis
genetics
endothelium
smooth muscle cells
author_facet Ayca Erbilgin
Mete Civelek
Casey E. Romanoski
Calvin Pan
Raffi Hagopian
Judith A. Berliner
Aldons J. Lusis
author_sort Ayca Erbilgin
title Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]
title_short Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]
title_full Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]
title_fullStr Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]
title_full_unstemmed Identification of CAD candidate genes in GWAS loci and their expression in vascular cells[S]
title_sort identification of cad candidate genes in gwas loci and their expression in vascular cells[s]
publisher Elsevier
series Journal of Lipid Research
issn 0022-2275
publishDate 2013-07-01
description Recent genome-wide association studies (GWAS) have identified 35 loci that significantly associate with coronary artery disease (CAD) susceptibility. The majority of the genes represented in these loci have not previously been studied in the context of atherosclerosis. To characterize the roles of these candidate genes in the vessel wall, we determined their expression levels in endothelial, smooth muscle, and macrophage cells isolated from healthy, prelesioned, and lesioned mouse aortas. We also performed expression quantitative locus (eQTL) mapping of these genes in human endothelial cells under control and proatherogenic conditions. Of the 57 genes studied, 31 were differentially expressed in one or more cell types in disease state in mice, and the expression levels of 8 were significantly associated with the CAD SNPs in human cells, 7 of which were also differentially expressed in mice. By integrating human and mouse results, we predict that PPAP2B, GALNT4, MAPKAPK5, TCTN1, SRR, SNF8, and ICAM1 play a causal role in the susceptibility to atherosclerosis through a role in the vasculature. Additionally, we highlight the genetic complexity of a subset of CAD loci through the differential expression of multiple candidate genes per locus and the involvement of genes that lie outside linkage disequilibrium blocks.
topic coronary artery disease
genome-wide association study
atherosclerosis
genetics
endothelium
smooth muscle cells
url http://www.sciencedirect.com/science/article/pii/S0022227520421376
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