Mapping potential pathways from polygenic liability through brain structure to psychological problems across the transition to adolescence

Author:

Lahey Benjamin B.1ORCID,Durham E. Leighton2,Brislin Sarah J.3,Barr Peter B.4,Dick Danielle M.3,Moore Tyler M.5,Pierce Brandon L.1,Tong Lin1,Reimann Gabrielle E.2,Jeong Hee Jung2,Dupont Randolph M.2,Kaczkurkin Antonia N.2ORCID

Affiliation:

1. University of Chicago Chicago IL USA

2. Vanderbilt University Nashville TN USA

3. Rutgers University Piscataway NJ USA

4. SUNY Downstate Health Sciences University Brooklyn NY USA

5. University of Pennsylvania Philadelphia PA USA

Abstract

BackgroundWe used a polygenic score for externalizing behavior (extPGS) and structural MRI to examine potential pathways from genetic liability to conduct problems via the brain across the adolescent transition.MethodsThree annual assessments of child conduct problems, attention‐deficit/hyperactivity problems, and internalizing problems were conducted across across 9–13 years of age among 4,475 children of European ancestry in the Adolescent Brain Cognitive DevelopmentSM Study (ABCD Study®).ResultsThe extPGS predicted conduct problems in each wave (R2 = 2.0%–2.9%). Bifactor models revealed that the extPRS predicted variance specific to conduct problems (R2 = 1.7%–2.1%), but also variance that conduct problems shared with other measured problems (R2 = .8%–1.4%). Longitudinally, extPGS predicted levels of specific conduct problems (R2 = 2.0%), but not their slope of change across age. The extPGS was associated with total gray matter volume (TGMV; R2 = .4%) and lower TGMV predicted both specific conduct problems (R2 = 1.7%–2.1%) and the variance common to all problems in each wave (R2 = 1.6%–3.1%). A modest proportion of the polygenic liability specific to conduct problems in each wave was statistically mediated by TGMV.ConclusionsAcross the adolescent transition, the extPGS predicted both variance specific to conduct problems and variance shared by all measured problems. The extPGS also was associated with TGMV, which robustly predicted conduct problems. Statistical mediation analyses suggested the hypothesis that polygenic variation influences individual differences in brain development that are related to the likelihood of conduct problems during the adolescent transition, justifying new research to test this causal hypothesis.

Funder

National Institute on Drug Abuse

Publisher

Wiley

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