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Paper Details

Investigation of genetic loci shared between bipolar disorder and risk-taking propensity: potential implications for pharmacological interventions.
Neuropsychopharmacology
2
2021
Author NameAffiliation
Giovanni SeverinoUniversity of Cagliari
Raffaella ArdauUnit of Clinical Pharmacology of the University Hospital of Cagliari
Caterina ChillottiUnit of Clinical Pharmacology of the University Hospital of Cagliari
Maria Del ZompoUniversity of Cagliari
Maria Del ZompoUnit of Clinical Pharmacology of the University Hospital of Cagliari
Bernhard T BauneUniversity of Munster
Bernhard T BauneMelbourne Medical School, The University of Melbourne
Bernhard T BauneThe Florey Institute of Neuroscience and Mental Health, The University of Melbourne
Alessio SquassinaUniversity of Cagliari
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Datasets

DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
DGIdbDrug-gene interaction databaseLink
GTExThe Genotype-Tissue Expression (GTEx) project aims to provide to the scientific community a resource with which to study human gene expression and regulation and its relationship to genetic variation. This project collected and analyzed multiple human tissues from donors who are also densely genotyped, to assess genetic variation within their genomes. By analyzing global RNA expression within individual tissues and treating the expression levels of genes as quantitative traits, variations in gene expression that are highly correlated with genetic variation can be identified as expression quantitative trait loci, or eQTLs.Link
GTExThe Genotype-Tissue Expression (GTEx) project aims to provide to the scientific community a resource with which to study human gene expression and regulation and its relationship to genetic variation. This project collected and analyzed multiple human tissues from donors who are also densely genotyped, to assess genetic variation within their genomes. By analyzing global RNA expression within individual tissues and treating the expression levels of genes as quantitative traits, variations in gene expression that are highly correlated with genetic variation can be identified as expression quantitative trait loci, or eQTLs.Link
GTExThe Genotype-Tissue Expression (GTEx) project aims to provide to the scientific community a resource with which to study human gene expression and regulation and its relationship to genetic variation. This project collected and analyzed multiple human tissues from donors who are also densely genotyped, to assess genetic variation within their genomes. By analyzing global RNA expression within individual tissues and treating the expression levels of genes as quantitative traits, variations in gene expression that are highly correlated with genetic variation can be identified as expression quantitative trait loci, or eQTLs.Link
GTExThe Genotype-Tissue Expression (GTEx) project aims to provide to the scientific community a resource with which to study human gene expression and regulation and its relationship to genetic variation. This project collected and analyzed multiple human tissues from donors who are also densely genotyped, to assess genetic variation within their genomes. By analyzing global RNA expression within individual tissues and treating the expression levels of genes as quantitative traits, variations in gene expression that are highly correlated with genetic variation can be identified as expression quantitative trait loci, or eQTLs.Link