Cargando…

Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study

BACKGROUND: Subcortical white matter hyperintensity on magnetic resonance imaging (MRI) of the brain, referred to as leukoaraiosis, is associated with increased risk of stroke and dementia. Hypertension may contribute to leukoaraiosis by accelerating the process of arteriosclerosis involving penetra...

Descripción completa

Detalles Bibliográficos
Autores principales: Smith, Jennifer A, Turner, Stephen T, Sun, Yan V, Fornage, Myriam, Kelly, Reagan J, Mosley, Thomas H, Jack, Clifford R, Kullo, Iftikhar J, Kardia, Sharon LR
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2679055/
https://www.ncbi.nlm.nih.gov/pubmed/19351393
http://dx.doi.org/10.1186/1755-8794-2-16
_version_ 1782166876269314048
author Smith, Jennifer A
Turner, Stephen T
Sun, Yan V
Fornage, Myriam
Kelly, Reagan J
Mosley, Thomas H
Jack, Clifford R
Kullo, Iftikhar J
Kardia, Sharon LR
author_facet Smith, Jennifer A
Turner, Stephen T
Sun, Yan V
Fornage, Myriam
Kelly, Reagan J
Mosley, Thomas H
Jack, Clifford R
Kullo, Iftikhar J
Kardia, Sharon LR
author_sort Smith, Jennifer A
collection PubMed
description BACKGROUND: Subcortical white matter hyperintensity on magnetic resonance imaging (MRI) of the brain, referred to as leukoaraiosis, is associated with increased risk of stroke and dementia. Hypertension may contribute to leukoaraiosis by accelerating the process of arteriosclerosis involving penetrating small arteries and arterioles in the brain. Leukoaraiosis volume is highly heritable but shows significant inter-individual variability that is not predicted well by any clinical covariates (except for age) or by single SNPs. METHODS: As part of the Genetics of Microangiopathic Brain Injury (GMBI) Study, 777 individuals (74% hypertensive) underwent brain MRI and were genotyped for 1649 SNPs from genes known or hypothesized to be involved in arteriosclerosis and related pathways. We examined SNP main effects, epistatic (gene-gene) interactions, and context-dependent (gene-environment) interactions between these SNPs and covariates (including conventional and novel risk factors for arteriosclerosis) for association with leukoaraiosis volume. Three methods were used to reduce the chance of false positive associations: 1) false discovery rate (FDR) adjustment for multiple testing, 2) an internal replication design, and 3) a ten-iteration four-fold cross-validation scheme. RESULTS: Four SNP main effects (in F3, KITLG, CAPN10, and MMP2), 12 SNP-covariate interactions (including interactions between KITLG and homocysteine, and between TGFB3 and both physical activity and C-reactive protein), and 173 SNP-SNP interactions were significant, replicated, and cross-validated. While a model containing the top single SNPs with main effects predicted only 3.72% of variation in leukoaraiosis in independent test samples, a multiple variable model that included the four most highly predictive SNP-SNP and SNP-covariate interactions predicted 11.83%. CONCLUSION: These results indicate that the genetic architecture of leukoaraiosis is complex, yet predictive, when the contributions of SNP main effects are considered in combination with effects of SNP interactions with other genes and covariates.
format Text
id pubmed-2679055
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-26790552009-05-08 Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study Smith, Jennifer A Turner, Stephen T Sun, Yan V Fornage, Myriam Kelly, Reagan J Mosley, Thomas H Jack, Clifford R Kullo, Iftikhar J Kardia, Sharon LR BMC Med Genomics Research Article BACKGROUND: Subcortical white matter hyperintensity on magnetic resonance imaging (MRI) of the brain, referred to as leukoaraiosis, is associated with increased risk of stroke and dementia. Hypertension may contribute to leukoaraiosis by accelerating the process of arteriosclerosis involving penetrating small arteries and arterioles in the brain. Leukoaraiosis volume is highly heritable but shows significant inter-individual variability that is not predicted well by any clinical covariates (except for age) or by single SNPs. METHODS: As part of the Genetics of Microangiopathic Brain Injury (GMBI) Study, 777 individuals (74% hypertensive) underwent brain MRI and were genotyped for 1649 SNPs from genes known or hypothesized to be involved in arteriosclerosis and related pathways. We examined SNP main effects, epistatic (gene-gene) interactions, and context-dependent (gene-environment) interactions between these SNPs and covariates (including conventional and novel risk factors for arteriosclerosis) for association with leukoaraiosis volume. Three methods were used to reduce the chance of false positive associations: 1) false discovery rate (FDR) adjustment for multiple testing, 2) an internal replication design, and 3) a ten-iteration four-fold cross-validation scheme. RESULTS: Four SNP main effects (in F3, KITLG, CAPN10, and MMP2), 12 SNP-covariate interactions (including interactions between KITLG and homocysteine, and between TGFB3 and both physical activity and C-reactive protein), and 173 SNP-SNP interactions were significant, replicated, and cross-validated. While a model containing the top single SNPs with main effects predicted only 3.72% of variation in leukoaraiosis in independent test samples, a multiple variable model that included the four most highly predictive SNP-SNP and SNP-covariate interactions predicted 11.83%. CONCLUSION: These results indicate that the genetic architecture of leukoaraiosis is complex, yet predictive, when the contributions of SNP main effects are considered in combination with effects of SNP interactions with other genes and covariates. BioMed Central 2009-04-07 /pmc/articles/PMC2679055/ /pubmed/19351393 http://dx.doi.org/10.1186/1755-8794-2-16 Text en Copyright © 2009 Smith et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Smith, Jennifer A
Turner, Stephen T
Sun, Yan V
Fornage, Myriam
Kelly, Reagan J
Mosley, Thomas H
Jack, Clifford R
Kullo, Iftikhar J
Kardia, Sharon LR
Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study
title Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study
title_full Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study
title_fullStr Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study
title_full_unstemmed Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study
title_short Complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the GENOA Study
title_sort complexity in the genetic architecture of leukoaraiosis in hypertensive sibships from the genoa study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2679055/
https://www.ncbi.nlm.nih.gov/pubmed/19351393
http://dx.doi.org/10.1186/1755-8794-2-16
work_keys_str_mv AT smithjennifera complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT turnerstephent complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT sunyanv complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT fornagemyriam complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT kellyreaganj complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT mosleythomash complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT jackcliffordr complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT kulloiftikharj complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy
AT kardiasharonlr complexityinthegeneticarchitectureofleukoaraiosisinhypertensivesibshipsfromthegenoastudy