Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL Levels

Endothelial lipase (LIPG) and zinc finger protein 202 (ZNF202) are two pivotal genes in HDL metabolism, and therefore, it is important to understand the impact their sequence variants may have on HDL cholesterol levels. We resequenced the entire both genes in White and Hispanic individuals having hi...

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Main Authors: Hamid eRazzaghi, Stephanie A Santorico, M Ilyas Kamboh
Format: Article
Language:English
Published: Frontiers Media S.A. 2012-06-01
Series:Frontiers in Genetics
Subjects:
HDL
Online Access:http://journal.frontiersin.org/Journal/10.3389/fgene.2012.00089/full
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spelling doaj-2fd0e5af60a54c08bdad71ca6b42bf082020-11-24T23:54:16ZengFrontiers Media S.A.Frontiers in Genetics1664-80212012-06-01310.3389/fgene.2012.0008924104Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL LevelsHamid eRazzaghi0Stephanie A Santorico1M Ilyas Kamboh2University of Colorado DenverUniversity of Colorado DenverUniversity of PittsburghEndothelial lipase (LIPG) and zinc finger protein 202 (ZNF202) are two pivotal genes in HDL metabolism, and therefore, it is important to understand the impact their sequence variants may have on HDL cholesterol levels. We resequenced the entire both genes in White and Hispanic individuals having high ( =75.90 mg/dl, n=114) or low ( =31.24 mg/dl, n=121) HDL cholesterol levels, and identified a total of 185 and 122 sequence variants in LIPG and ZNF202, respectively. We found only two missense variants in LIPG (T111I and N396S) and two in ZNF202 (A154V and K259E). In both genes, there were several rare variants unique to either the low or high HDL group. For LIPG, the proportion of unique variants differed between the high and low HDL groups in both Whites (p=0.022) and Hispanics (p=0.017), but for ZNF202 this difference was observed only in Hispanics (p=0.021). We also identified a common haplotype in ZNF202 among Whites that was significantly associated with high HDL group (p=0.0133). These findings provide insights into the genetics of LIPG and ZNF202, and suggest that sequence variants occurring with high frequency in non-exonic regions may play a prominent role in modulating HDL-C levels in the general population.http://journal.frontiersin.org/Journal/10.3389/fgene.2012.00089/fullLIPGZNF202Endothelial lipaseZinc Finger Protein 202HDLGenetic association
collection DOAJ
language English
format Article
sources DOAJ
author Hamid eRazzaghi
Stephanie A Santorico
M Ilyas Kamboh
spellingShingle Hamid eRazzaghi
Stephanie A Santorico
M Ilyas Kamboh
Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL Levels
Frontiers in Genetics
LIPG
ZNF202
Endothelial lipase
Zinc Finger Protein 202
HDL
Genetic association
author_facet Hamid eRazzaghi
Stephanie A Santorico
M Ilyas Kamboh
author_sort Hamid eRazzaghi
title Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL Levels
title_short Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL Levels
title_full Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL Levels
title_fullStr Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL Levels
title_full_unstemmed Population-based Resequencing of LIPG and ZNF202 Genes in Subjects with Extreme HDL Levels
title_sort population-based resequencing of lipg and znf202 genes in subjects with extreme hdl levels
publisher Frontiers Media S.A.
series Frontiers in Genetics
issn 1664-8021
publishDate 2012-06-01
description Endothelial lipase (LIPG) and zinc finger protein 202 (ZNF202) are two pivotal genes in HDL metabolism, and therefore, it is important to understand the impact their sequence variants may have on HDL cholesterol levels. We resequenced the entire both genes in White and Hispanic individuals having high ( =75.90 mg/dl, n=114) or low ( =31.24 mg/dl, n=121) HDL cholesterol levels, and identified a total of 185 and 122 sequence variants in LIPG and ZNF202, respectively. We found only two missense variants in LIPG (T111I and N396S) and two in ZNF202 (A154V and K259E). In both genes, there were several rare variants unique to either the low or high HDL group. For LIPG, the proportion of unique variants differed between the high and low HDL groups in both Whites (p=0.022) and Hispanics (p=0.017), but for ZNF202 this difference was observed only in Hispanics (p=0.021). We also identified a common haplotype in ZNF202 among Whites that was significantly associated with high HDL group (p=0.0133). These findings provide insights into the genetics of LIPG and ZNF202, and suggest that sequence variants occurring with high frequency in non-exonic regions may play a prominent role in modulating HDL-C levels in the general population.
topic LIPG
ZNF202
Endothelial lipase
Zinc Finger Protein 202
HDL
Genetic association
url http://journal.frontiersin.org/Journal/10.3389/fgene.2012.00089/full
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