Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol.
Genome-wide association studies (GWAS) have successfully identified loci associated with quantitative traits, such as blood lipids. Deep resequencing studies are being utilized to catalogue the allelic spectrum at GWAS loci. The goal of these studies is to identify causative variants and missing her...
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2011-12-01
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doaj-8463f57c46354c87b8d36d7127f061362020-11-25T02:30:16ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042011-12-01712e100239310.1371/journal.pgen.1002393Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol.Sumeet A KhetarpalAndrew C EdmondsonAvanthi RaghavanHemanth NeeliWeijun JinKaren O BadellinoSerkalem DemissieAlisa K ManningStephanie L DerOhannessianMegan L WolfeL Adrienne CupplesMingyao LiSekar KathiresanDaniel J RaderGenome-wide association studies (GWAS) have successfully identified loci associated with quantitative traits, such as blood lipids. Deep resequencing studies are being utilized to catalogue the allelic spectrum at GWAS loci. The goal of these studies is to identify causative variants and missing heritability, including heritability due to low frequency and rare alleles with large phenotypic impact. Whereas rare variant efforts have primarily focused on nonsynonymous coding variants, we hypothesized that noncoding variants in these loci are also functionally important. Using the HDL-C gene LIPG as an example, we explored the effect of regulatory variants identified through resequencing of subjects at HDL-C extremes on gene expression, protein levels, and phenotype. Resequencing a portion of the LIPG promoter and 5' UTR in human subjects with extreme HDL-C, we identified several rare variants in individuals from both extremes. Luciferase reporter assays were used to measure the effect of these rare variants on LIPG expression. Variants conferring opposing effects on gene expression were enriched in opposite extremes of the phenotypic distribution. Minor alleles of a common regulatory haplotype and noncoding GWAS SNPs were associated with reduced plasma levels of the LIPG gene product endothelial lipase (EL), consistent with its role in HDL-C catabolism. Additionally, we found that a common nonfunctional coding variant associated with HDL-C (rs2000813) is in linkage disequilibrium with a 5' UTR variant (rs34474737) that decreases LIPG promoter activity. We attribute the gene regulatory role of rs34474737 to the observed association of the coding variant with plasma EL levels and HDL-C. Taken together, the findings show that both rare and common noncoding regulatory variants are important contributors to the allelic spectrum in complex trait loci.http://europepmc.org/articles/PMC3234219?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sumeet A Khetarpal Andrew C Edmondson Avanthi Raghavan Hemanth Neeli Weijun Jin Karen O Badellino Serkalem Demissie Alisa K Manning Stephanie L DerOhannessian Megan L Wolfe L Adrienne Cupples Mingyao Li Sekar Kathiresan Daniel J Rader |
spellingShingle |
Sumeet A Khetarpal Andrew C Edmondson Avanthi Raghavan Hemanth Neeli Weijun Jin Karen O Badellino Serkalem Demissie Alisa K Manning Stephanie L DerOhannessian Megan L Wolfe L Adrienne Cupples Mingyao Li Sekar Kathiresan Daniel J Rader Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol. PLoS Genetics |
author_facet |
Sumeet A Khetarpal Andrew C Edmondson Avanthi Raghavan Hemanth Neeli Weijun Jin Karen O Badellino Serkalem Demissie Alisa K Manning Stephanie L DerOhannessian Megan L Wolfe L Adrienne Cupples Mingyao Li Sekar Kathiresan Daniel J Rader |
author_sort |
Sumeet A Khetarpal |
title |
Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol. |
title_short |
Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol. |
title_full |
Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol. |
title_fullStr |
Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol. |
title_full_unstemmed |
Mining the LIPG allelic spectrum reveals the contribution of rare and common regulatory variants to HDL cholesterol. |
title_sort |
mining the lipg allelic spectrum reveals the contribution of rare and common regulatory variants to hdl cholesterol. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Genetics |
issn |
1553-7390 1553-7404 |
publishDate |
2011-12-01 |
description |
Genome-wide association studies (GWAS) have successfully identified loci associated with quantitative traits, such as blood lipids. Deep resequencing studies are being utilized to catalogue the allelic spectrum at GWAS loci. The goal of these studies is to identify causative variants and missing heritability, including heritability due to low frequency and rare alleles with large phenotypic impact. Whereas rare variant efforts have primarily focused on nonsynonymous coding variants, we hypothesized that noncoding variants in these loci are also functionally important. Using the HDL-C gene LIPG as an example, we explored the effect of regulatory variants identified through resequencing of subjects at HDL-C extremes on gene expression, protein levels, and phenotype. Resequencing a portion of the LIPG promoter and 5' UTR in human subjects with extreme HDL-C, we identified several rare variants in individuals from both extremes. Luciferase reporter assays were used to measure the effect of these rare variants on LIPG expression. Variants conferring opposing effects on gene expression were enriched in opposite extremes of the phenotypic distribution. Minor alleles of a common regulatory haplotype and noncoding GWAS SNPs were associated with reduced plasma levels of the LIPG gene product endothelial lipase (EL), consistent with its role in HDL-C catabolism. Additionally, we found that a common nonfunctional coding variant associated with HDL-C (rs2000813) is in linkage disequilibrium with a 5' UTR variant (rs34474737) that decreases LIPG promoter activity. We attribute the gene regulatory role of rs34474737 to the observed association of the coding variant with plasma EL levels and HDL-C. Taken together, the findings show that both rare and common noncoding regulatory variants are important contributors to the allelic spectrum in complex trait loci. |
url |
http://europepmc.org/articles/PMC3234219?pdf=render |
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