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Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS)

Genome-wide association studies have identified numerous variants associated with lipid levels; yet, the majority are located in non-coding regions with unclear mechanisms. In the Insulin Resistance Atherosclerosis Family Study (IRASFS), heritability estimates suggest a strong genetic basis: low-den...

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Autores principales: Gao, Chuan, Tabb, Keri L., Dimitrov, Latchezar M., Taylor, Kent D., Wang, Nan, Guo, Xiuqing, Long, Jirong, Rotter, Jerome I., Watanabe, Richard M., Curran, Joanne E., Blangero, John, Langefeld, Carl D., Bowden, Donald W., Palmer, Nicholette D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5884862/
https://www.ncbi.nlm.nih.gov/pubmed/29618726
http://dx.doi.org/10.1038/s41598-018-23727-2
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author Gao, Chuan
Tabb, Keri L.
Dimitrov, Latchezar M.
Taylor, Kent D.
Wang, Nan
Guo, Xiuqing
Long, Jirong
Rotter, Jerome I.
Watanabe, Richard M.
Curran, Joanne E.
Blangero, John
Langefeld, Carl D.
Bowden, Donald W.
Palmer, Nicholette D.
author_facet Gao, Chuan
Tabb, Keri L.
Dimitrov, Latchezar M.
Taylor, Kent D.
Wang, Nan
Guo, Xiuqing
Long, Jirong
Rotter, Jerome I.
Watanabe, Richard M.
Curran, Joanne E.
Blangero, John
Langefeld, Carl D.
Bowden, Donald W.
Palmer, Nicholette D.
author_sort Gao, Chuan
collection PubMed
description Genome-wide association studies have identified numerous variants associated with lipid levels; yet, the majority are located in non-coding regions with unclear mechanisms. In the Insulin Resistance Atherosclerosis Family Study (IRASFS), heritability estimates suggest a strong genetic basis: low-density lipoprotein (LDL, h(2) = 0.50), high-density lipoprotein (HDL, h(2) = 0.57), total cholesterol (TC, h(2) = 0.53), and triglyceride (TG, h(2) = 0.42) levels. Exome sequencing of 1,205 Mexican Americans (90 pedigrees) from the IRASFS identified 548,889 variants and association and linkage analyses with lipid levels were performed. One genome-wide significant signal was detected in APOA5 with TG (rs651821, P(TG) = 3.67 × 10(−10), LOD(TG) = 2.36, MAF = 14.2%). In addition, two correlated SNPs (r(2) = 1.0) rs189547099 (P(TG) = 6.31 × 10(−08), LOD(TG) = 3.13, MAF = 0.50%) and chr4:157997598 (P(TG) = 6.31 × 10(−08), LOD(TG) = 3.13, MAF = 0.50%) reached exome-wide significance (P < 9.11 × 10(−08)). rs189547099 is an intronic SNP in FNIP2 and SNP chr4:157997598 is intronic in GLRB. Linkage analysis revealed 46 SNPs with a LOD > 3 with the strongest signal at rs1141070 (LOD(LDL) = 4.30, P(LDL) = 0.33, MAF = 21.6%) in DFFB. A total of 53 nominally associated variants (P < 5.00 × 10(−05), MAF ≥ 1.0%) were selected for replication in six Mexican-American cohorts (N = 3,280). The strongest signal observed was a synonymous variant (rs1160983, P(LDL) = 4.44 × 10(−17), MAF = 2.7%) in TOMM40. Beyond primary findings, previously reported lipid loci were fine-mapped using exome sequencing in IRASFS. These results support that exome sequencing complements and extends insights into the genetics of lipid levels.
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spelling pubmed-58848622018-04-09 Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS) Gao, Chuan Tabb, Keri L. Dimitrov, Latchezar M. Taylor, Kent D. Wang, Nan Guo, Xiuqing Long, Jirong Rotter, Jerome I. Watanabe, Richard M. Curran, Joanne E. Blangero, John Langefeld, Carl D. Bowden, Donald W. Palmer, Nicholette D. Sci Rep Article Genome-wide association studies have identified numerous variants associated with lipid levels; yet, the majority are located in non-coding regions with unclear mechanisms. In the Insulin Resistance Atherosclerosis Family Study (IRASFS), heritability estimates suggest a strong genetic basis: low-density lipoprotein (LDL, h(2) = 0.50), high-density lipoprotein (HDL, h(2) = 0.57), total cholesterol (TC, h(2) = 0.53), and triglyceride (TG, h(2) = 0.42) levels. Exome sequencing of 1,205 Mexican Americans (90 pedigrees) from the IRASFS identified 548,889 variants and association and linkage analyses with lipid levels were performed. One genome-wide significant signal was detected in APOA5 with TG (rs651821, P(TG) = 3.67 × 10(−10), LOD(TG) = 2.36, MAF = 14.2%). In addition, two correlated SNPs (r(2) = 1.0) rs189547099 (P(TG) = 6.31 × 10(−08), LOD(TG) = 3.13, MAF = 0.50%) and chr4:157997598 (P(TG) = 6.31 × 10(−08), LOD(TG) = 3.13, MAF = 0.50%) reached exome-wide significance (P < 9.11 × 10(−08)). rs189547099 is an intronic SNP in FNIP2 and SNP chr4:157997598 is intronic in GLRB. Linkage analysis revealed 46 SNPs with a LOD > 3 with the strongest signal at rs1141070 (LOD(LDL) = 4.30, P(LDL) = 0.33, MAF = 21.6%) in DFFB. A total of 53 nominally associated variants (P < 5.00 × 10(−05), MAF ≥ 1.0%) were selected for replication in six Mexican-American cohorts (N = 3,280). The strongest signal observed was a synonymous variant (rs1160983, P(LDL) = 4.44 × 10(−17), MAF = 2.7%) in TOMM40. Beyond primary findings, previously reported lipid loci were fine-mapped using exome sequencing in IRASFS. These results support that exome sequencing complements and extends insights into the genetics of lipid levels. Nature Publishing Group UK 2018-04-04 /pmc/articles/PMC5884862/ /pubmed/29618726 http://dx.doi.org/10.1038/s41598-018-23727-2 Text en © The Author(s) 2018 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Gao, Chuan
Tabb, Keri L.
Dimitrov, Latchezar M.
Taylor, Kent D.
Wang, Nan
Guo, Xiuqing
Long, Jirong
Rotter, Jerome I.
Watanabe, Richard M.
Curran, Joanne E.
Blangero, John
Langefeld, Carl D.
Bowden, Donald W.
Palmer, Nicholette D.
Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS)
title Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS)
title_full Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS)
title_fullStr Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS)
title_full_unstemmed Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS)
title_short Exome Sequencing Identifies Genetic Variants Associated with Circulating Lipid Levels in Mexican Americans: The Insulin Resistance Atherosclerosis Family Study (IRASFS)
title_sort exome sequencing identifies genetic variants associated with circulating lipid levels in mexican americans: the insulin resistance atherosclerosis family study (irasfs)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5884862/
https://www.ncbi.nlm.nih.gov/pubmed/29618726
http://dx.doi.org/10.1038/s41598-018-23727-2
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