Understanding the difference in genetic regulation of gene expression between brain and blood is important for discovering genes for brain-related traits and disorders. Here, we estimate the correlation of genetic effects at the top-associated cis-expression or -DNA methylation (DNAm) quantitative trait loci (cis-eQTLs or cis-mQTLs) between brain and blood (r b ). Using publicly available data, we find that genetic effects at the top cis-eQTLs or mQTLs are highly correlated between independent brain and blood samples (r b = 0.70 for cis-eQTLs and r ^ b = 0.78 for cis-mQTLs). Using meta-analyzed brain cis-eQTL/mQTL data (n = 526 to 1194), we identify 61 genes and 167 DNAm sites associated with four brain-related phenotypes, most of which are...
Germ-line genetic control of gene expression occurs via expression quantitative trait loci (eQTLs). ...
Epigenome-wide association studies (EWAS) assessing the link between DNA methylation (DNAm) and phen...
Identification of therapeutic targets from genome-wide association studies (GWAS) requires insights ...
Understanding the difference in genetic regulation of gene expression between brain and blood is imp...
Understanding the difference in genetic regulation of gene expression between brain and blood is imp...
A fundamental challenge in the post-genome era is to understand and annotate the consequences of gen...
Characterizing genetic influences on DNA methylation (DNAm) provides an opportunity to understand me...
Emerging evidence emphasizes the strong impact of regulatory genomic elements in neurodevelopmental ...
We have observed extensive interindividual differences in DNA methylation of 8590 CpG sites of 6229 ...
Germ-line genetic control of gene expression occurs via expression quantitative trait loci (eQTLs). ...
Epigenome-wide association studies (EWAS) assessing the link between DNA methylation (DNAm) and phen...
Identification of therapeutic targets from genome-wide association studies (GWAS) requires insights ...
Understanding the difference in genetic regulation of gene expression between brain and blood is imp...
Understanding the difference in genetic regulation of gene expression between brain and blood is imp...
A fundamental challenge in the post-genome era is to understand and annotate the consequences of gen...
Characterizing genetic influences on DNA methylation (DNAm) provides an opportunity to understand me...
Emerging evidence emphasizes the strong impact of regulatory genomic elements in neurodevelopmental ...
We have observed extensive interindividual differences in DNA methylation of 8590 CpG sites of 6229 ...
Germ-line genetic control of gene expression occurs via expression quantitative trait loci (eQTLs). ...
Epigenome-wide association studies (EWAS) assessing the link between DNA methylation (DNAm) and phen...
Identification of therapeutic targets from genome-wide association studies (GWAS) requires insights ...