In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci associated with various electrocardiographic traits and cardiac arrhythmia predisposition. A considerable fraction of these loci lie within inter-genic regions. The underlying trait-associated variants likely reside in regulatory regions and exert their effect by modulating gene expression. Hence, the key to unraveling the molecular mechanisms underlying these cardiac traits is to interrogate variants for association with differential transcript abundance by expression quantitative trait locus (eQTL) analysis. In this study we conducted an eQTL analysis of human heart. For a total of 129 left ventricular samples that were collected from non-disea...
We apply integrative approaches to expression quantitative loci (eQTLs) from 44 tissues from the Gen...
Background: Genetic variation is an important determinant of RNA transcription and splicing, which i...
Electrocardiographic traits are important, substantially heritable determinants of risk of arrhythmi...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
<div><p>In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal l...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
The causal variants and genes underlying thousands of cardiac GWAS signals have yet to be identified...
Genome-wide association studies have shed light on the association between natural genetic variation...
Abstract Background Identifica...
Genetic variants at hundreds of loci associated with cardiovascular phenotypes have been identified ...
<p>Overview of eQTL effects of reported cardiac electric trait related GWAS SNPs. Only GWAS SNPs rea...
Background: Genetic variation is an important determinant of RNA transcription and splicing, which i...
We apply integrative approaches to expression quantitative loci (eQTLs) from 44 tissues from the Gen...
Background: Genetic variation is an important determinant of RNA transcription and splicing, which i...
Electrocardiographic traits are important, substantially heritable determinants of risk of arrhythmi...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
<div><p>In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal l...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
In recent years genome-wide association studies (GWAS) have uncovered numerous chromosomal loci asso...
The causal variants and genes underlying thousands of cardiac GWAS signals have yet to be identified...
Genome-wide association studies have shed light on the association between natural genetic variation...
Abstract Background Identifica...
Genetic variants at hundreds of loci associated with cardiovascular phenotypes have been identified ...
<p>Overview of eQTL effects of reported cardiac electric trait related GWAS SNPs. Only GWAS SNPs rea...
Background: Genetic variation is an important determinant of RNA transcription and splicing, which i...
We apply integrative approaches to expression quantitative loci (eQTLs) from 44 tissues from the Gen...
Background: Genetic variation is an important determinant of RNA transcription and splicing, which i...
Electrocardiographic traits are important, substantially heritable determinants of risk of arrhythmi...