Literature DB >> 21303902

Dense genotyping of candidate gene loci identifies variants associated with high-density lipoprotein cholesterol.

Andrew C Edmondson1, Peter S Braund, Ioannis M Stylianou, Amit V Khera, Christopher P Nelson, Megan L Wolfe, Stephanie L Derohannessian, Brendan J Keating, Liming Qu, Jing He, Martin D Tobin, Maciej Tomaszewski, Jens Baumert, Norman Klopp, Angela Döring, Barbara Thorand, Mingyao Li, Muredach P Reilly, Wolfgang Koenig, Nilesh J Samani, Daniel J Rader.   

Abstract

BACKGROUND: Plasma levels of high-density lipoprotein cholesterol (HDL-C) are known to be heritable, but only a fraction of the heritability is explained. We used a high-density genotyping array containing single-nucleotide polymorphisms (SNPs) from HDL-C candidate genes selected on known biology of HDL-C metabolism, mouse genetic studies, and human genetic association studies. SNP selection was based on tagging SNPs and included low-frequency nonsynonymous SNPs. METHODS AND
RESULTS: Association analysis in a cohort containing extremes of HDL-C (case-control, n=1733) provided a discovery phase, with replication in 3 additional populations for a total meta-analysis in 7857 individuals. We replicated the majority of loci identified through genome-wide association studies and present on the array (including ABCA1, APOA1/C3/A4/A5, APOB, APOE/C1/C2, CETP, CTCF-PRMT8, FADS1/2/3, GALNT2, LCAT, LILRA3, LIPC, LIPG, LPL, LRP4, SCARB1, TRIB1, ZNF664) and provide evidence that suggests an association in several previously unreported candidate gene loci (including ABCG1, GPR109A/B/81, NFKB1, PON1/2/3/4). There was evidence for multiple, independent association signals in 5 loci, including association with low-frequency nonsynonymous variants.
CONCLUSIONS: Genetic loci associated with HDL-C are likely to harbor multiple, independent causative variants, frequently with opposite effects on the HDL-C phenotype. Cohorts comprising subjects at the extremes of the HDL-C distribution may be efficiently used in a case-control discovery of quantitative traits.

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Year:  2011        PMID: 21303902      PMCID: PMC3319351          DOI: 10.1161/CIRCGENETICS.110.957563

Source DB:  PubMed          Journal:  Circ Cardiovasc Genet        ISSN: 1942-3268


  24 in total

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5.  Population-based resequencing of ANGPTL4 uncovers variations that reduce triglycerides and increase HDL.

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Journal:  Atherosclerosis       Date:  2009-03-11       Impact factor: 5.162

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5.  Epipolymorphisms within lipoprotein genes contribute independently to plasma lipid levels in familial hypercholesterolemia.

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7.  Genome-wide family-based linkage analysis of exome chip variants and cardiometabolic risk.

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