[HTML][HTML] Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases

N de Klein, EA Tsai, M Vochteloo, D Baird, Y Huang… - Nature …, 2023 - nature.com
Identification of therapeutic targets from genome-wide association studies (GWAS) requires
insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing …

Brain expression quantitative trait locus and network analysis reveals downstream effects and putative drivers for brain-related diseases

N de Klein, EA Tsai, M Vochteloo, D Baird, Y Huang… - bioRxiv, 2021 - biorxiv.org
Gaining insight into the downstream consequences of non-coding variants is an essential
step towards the identification of therapeutic targets from genome-wide association study …

[PDF][PDF] Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases

N de Klein, EA Tsai, M Vochteloo, D Baird, Y Huang… - academia.edu
We combined 14 eQTL datasets into the 'MetaBrain'resource to maximize statistical power to
detect eQTLs and create a brain-specific gene co-regulation network (Fig. 2, Supplementary …

Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases

N de Klein, EA Tsai, M Vochteloo, D Baird… - Nature …, 2023 - research.rug.nl
Identification of therapeutic targets from genome-wide association studies (GWAS) requires
insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing …

Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases

N de Klein, EA Tsai, M Vochteloo, D Baird… - Nature …, 2023 - pubmed.ncbi.nlm.nih.gov
Identification of therapeutic targets from genome-wide association studies (GWAS) requires
insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing …

[HTML][HTML] Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases

N de Klein, EA Tsai, M Vochteloo, D Baird… - Nature …, 2023 - ncbi.nlm.nih.gov
Identification of therapeutic targets from genome-wide association studies (GWAS) requires
insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing …

[PDF][PDF] Brain expression quantitative trait locus and network analysis reveals downstream effects and putative 2 drivers for brain-related diseases 3

CY Chen, S van Dam, P Deelen, OB Bakker… - scholar.archive.org
Brain expression quantitative trait locus and network analysis reveals downstream effects and
putative drivers for brain-related Page 1 1 Brain expression quantitative trait locus and network …

Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases

N de Klein, EA Tsai, M Vochteloo, D Baird, Y Huang… - paper.sciencenet.cn
Identification of therapeutic targets from genome-wide association studies (GWAS) requires
insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing …

Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases.

N de Klein, EA Tsai, M Vochteloo, D Baird… - Nature …, 2023 - europepmc.org
Identification of therapeutic targets from genome-wide association studies (GWAS) requires
insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing …

Brain expression quantitative trait locus and network analyses reveal downstream effects and putative drivers for brain-related diseases.

N de Klein, EA Tsai, M Vochteloo, D Baird… - Nature …, 2023 - europepmc.org
Identification of therapeutic targets from genome-wide association studies (GWAS) requires
insights into downstream functional consequences. We harmonized 8,613 RNA-sequencing …