Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a variety of postnatal brain-related traits, including susceptibility to neuropsychiatric disorders. However, to date, there have been no studies that have mapped genome-wide expression quantitative trait loci (eQTL) specifically in the human prenatal brain. Results We performed deep RNA sequencing and genome-wide genotyping on a unique collection of 120 human brains from the second trimester of gestation to provide the first eQTL dataset derived exclusively from the human fetal brain. We identify high confidence cis-acting eQTL at the individual transcript as well as whole gene level, including many mapping to a common inversion polymorphism on ...
The majority of common risk alleles identified for neuropsychiatric disorders reside in non-coding r...
Common genetic variation appears to largely influence risk for neuropsychiatric disorders through ef...
Tissue-specific regulatory regions harbor substantial genetic risk for disease. Because brain develo...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
BACKGROUND: Genetic influences on gene expression in the human fetal brain plausibly impact upon a v...
This is the final version. Available on open access from BMC via the DOI in this recordAvailability ...
BACKGROUND: Genetic influences on gene expression in the human fetal brain plausibly impact upon a v...
Abstract Background Genetic influences on gene expression in the human fetal brain plausibly impact ...
This dataset contains summary statistics for eQTL (Expression Quantitative Trait Loci) analyses for ...
We characterized DNA methylation quantitative trait loci (mQTLs) in a large collection (n = 166) of ...
We characterized DNA methylation quantitative trait loci (mQTLs) in a large collection (n = 166) of ...
The majority of common risk alleles identified for neuropsychiatric disorders reside in non-coding r...
Common genetic variation appears to largely influence risk for neuropsychiatric disorders through ef...
Tissue-specific regulatory regions harbor substantial genetic risk for disease. Because brain develo...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
Background Genetic influences on gene expression in the human fetal brain plausibly impact upon a va...
BACKGROUND: Genetic influences on gene expression in the human fetal brain plausibly impact upon a v...
This is the final version. Available on open access from BMC via the DOI in this recordAvailability ...
BACKGROUND: Genetic influences on gene expression in the human fetal brain plausibly impact upon a v...
Abstract Background Genetic influences on gene expression in the human fetal brain plausibly impact ...
This dataset contains summary statistics for eQTL (Expression Quantitative Trait Loci) analyses for ...
We characterized DNA methylation quantitative trait loci (mQTLs) in a large collection (n = 166) of ...
We characterized DNA methylation quantitative trait loci (mQTLs) in a large collection (n = 166) of ...
The majority of common risk alleles identified for neuropsychiatric disorders reside in non-coding r...
Common genetic variation appears to largely influence risk for neuropsychiatric disorders through ef...
Tissue-specific regulatory regions harbor substantial genetic risk for disease. Because brain develo...