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Uncovering the genetic architecture of broad antisocial behavior through a genome-wide association study meta-analysis.

Title: Uncovering the genetic architecture of broad antisocial behavior through a genome-wide association study meta-analysis.
Authors: Tielbeek, J.J.; Uffelmann, E.; Williams, B.S.; Colodro-Conde, L.; Gagnon, É.; Mallard, T.T.; Levitt, B.E.; Jansen, P.R.; Johansson, A.; Sallis, H.M.; Pistis, G.; Saunders, GRB; Allegrini, A.G.; Rimfeld, K.; Konte, B.; Klein, M.; Hartmann, A.M.; Salvatore, J.E.; Nolte, I.M.; Demontis, D.; Malmberg, ALK; Burt, S.A.; Savage, J.E.; Sugden, K.; Poulton, R.; Harris, K.M.; Vrieze, S.; McGue, M.; Iacono, W.G.; Mota, N.R.; Mill, J.; Viana, J.F.; Mitchell, B.L.; Morosoli, J.J.; Andlauer, TFM; Ouellet-Morin, I.; Tremblay, R.E.; Côté, S.M.; Gouin, J.P.; Brendgen, M.R.; Dionne, G.; Vitaro, F.; Lupton, M.K.; Martin, N.G.; Castelao, E.; Räikkönen, K.; Eriksson, J.G.; Lahti, J.; Hartman, C.A.; Oldehinkel, A.J.; Snieder, H.; Liu, H.; Preisig, M.; Whipp, A.; Vuoksimaa, E.; Lu, Y.; Jern, P.; Rujescu, D.; Giegling, I.; Palviainen, T.; Kaprio, J.; Harden, K.P.; Munafò, M.R.; Morneau-Vaillancourt, G.; Plomin, R.; Viding, E.; Boutwell, B.B.; Aliev, F.; Dick, D.M.; Popma, A.; Faraone, S.V.; Børglum, A.D.; Medland, S.E.; Franke, B.; Boivin, M.; Pingault, J.B.; Glennon, J.C.; Barnes, J.C.; Fisher, S.E.; Moffitt, T.E.; Caspi, A.; Polderman, TJC; Posthuma, D.
Contributors: COGA Consortium; Spit for Science Working Group; Porjesz, B.; Hesselbrock, V.; Foroud, T.; Agrawal, A.; Edenberg, H.J.; Liu, Y.; Plawecki, M.H.; Kuperman, S.; Kramer, J.R.; Meyers, J.M.; Kamarajan, C.; Pandey, A.; Bierut, L.; Rice, J.; Bucholz, K.K.; Schuckit, M.A.; Tischfield, J.; Hart, R.; Almasy, L.; Goate, A.; Slesinger, P.; Scott, D.
Publication Year: 2022
Collection: Université de Lausanne (UNIL): Serval - Serveur académique lausannois
Subject Terms: Animals; Mice; Antisocial Personality Disorder/genetics; Genome-Wide Association Study; Conduct Disorder/genetics; Conduct Disorder/psychology; Aggression/psychology; Multifactorial Inheritance/genetics; Membrane Proteins/genetics; Nerve Tissue Proteins/genetics
Description: Despite the substantial heritability of antisocial behavior (ASB), specific genetic variants robustly associated with the trait have not been identified. The present study by the Broad Antisocial Behavior Consortium (BroadABC) meta-analyzed data from 28 discovery samples (N = 85,359) and five independent replication samples (N = 8058) with genotypic data and broad measures of ASB. We identified the first significant genetic associations with broad ASB, involving common intronic variants in the forkhead box protein P2 (FOXP2) gene (lead SNP rs12536335, p = 6.32 × 10 -10 ). Furthermore, we observed intronic variation in Foxp2 and one of its targets (Cntnap2) distinguishing a mouse model of pathological aggression (BALB/cJ strain) from controls (BALB/cByJ strain). Polygenic risk score (PRS) analyses in independent samples revealed that the genetic risk for ASB was associated with several antisocial outcomes across the lifespan, including diagnosis of conduct disorder, official criminal convictions, and trajectories of antisocial development. We found substantial genetic correlations of ASB with mental health (depression r g = 0.63, insomnia r g = 0.47), physical health (overweight r g = 0.19, waist-to-hip ratio r g = 0.32), smoking (r g = 0.54), cognitive ability (intelligence r g = -0.40), educational attainment (years of schooling r g = -0.46) and reproductive traits (age at first birth r g = -0.58, father's age at death r g = -0.54). Our findings provide a starting point toward identifying critical biosocial risk mechanisms for the development of ASB.
Document Type: article in journal/newspaper
Language: English
ISSN: 1476-5578
Relation: Molecular Psychiatry; https://iris.unil.ch/handle/iris/162075; serval:BIB_661C5766F23D; 000871806500001
DOI: 10.1038/s41380-022-01793-3
Availability: https://iris.unil.ch/handle/iris/162075; https://doi.org/10.1038/s41380-022-01793-3
Accession Number: edsbas.1944B933
Database: BASE