Author:
Lam Max,Chen Chia-Yen,Hill W. David,Xia Charley,Tian Ruoyu,Levey Daniel F.,Gelernter Joel,Stein Murray B.,team Biogen Biobank,Hatoum Alexander S.,Huang Hailiang,Malhotra Anil K.,Runz Heiko,Ge Tian,Lencz Todd
Abstract
AbstractCognitive deficits are known to be related to most forms of psychopathology. Here, we perform local genetic correlation analysis as a means of identifying independent segments of the genome that show biologically interpretable pleiotropic associations between cognitive dimensions and psychopathology. We identified collective segments of the genome, which we call “meta-loci”, that showed differential pleiotropic patterns for psychopathology relative to either General Cognitive Ability (GCA) or Non-Cognitive Skills (NCS). We observed that neurodevelopmental gene sets expressed during the prenatal-early childhood predominated in GCA-relevant meta-loci, while post-natal synaptic gene sets were more involved in NCS-relevant meta-loci. Notably, we found that GABA-ergic, cholinergic, and glutamatergic genes drove pleiotropic relationships within dissociable NCS meta-loci.
Publisher
Cold Spring Harbor Laboratory
Cited by
2 articles.
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