DNA methylation and general psychopathology in childhood: An epigenome-wide meta-analysis from the PACE consortium

Author:

Rijlaarsdam JolienORCID,Cosin MartaORCID,Schellhas LauraORCID,Abrishamcar SarinaORCID,Malmberg AnniORCID,Neumann AlexanderORCID,Felix Janine F.ORCID,Sunyer JordiORCID,Gutzkow Kristine B.ORCID,Grazuleviciene ReginaORCID,Wright JohnORCID,Kampouri Mariza,Zar Heather J.ORCID,Stein Dan J.ORCID,Heinonen KatiORCID,Räikkönen KatriORCID,Lahti JariORCID,Huels AnkeORCID,Caramaschi DorettaORCID,Alemany SilviaORCID,Cecil Charlotte A. M.ORCID

Abstract

AbstractThe general psychopathology factor (GPF) has been proposed as a way to capture variance shared between psychiatric symptoms. Despite a growing body of evidence showing both genetic and environmental influences on GPF, the biological mechanisms underlying these influences remain unclear. In the current study, we conducted epigenome-wide meta-analyses to identify both probe- and region-level associations of DNA methylation (DNAm) with school-age general psychopathology in six cohorts from the Pregnancy And Childhood Epigenetics (PACE) Consortium. DNAm was examined both at birth (cord blood; prospective analysis) and during school-age (peripheral whole blood; cross-sectional analysis) in total samples of N=2,178 and N=2,190, respectively. At school-age, we identified one probe (cg11945228) located in the Bromodomain-containing protein 2 gene (BRD2) that negatively associated with GPF (p=8.58×10−8). We also identified a significant DMR at school-age (p=1.63×10−8), implicating the SHC Adaptor Protein 4 (SHC4) gene that has been previously implicated in multiple types of psychiatric disorders in adulthood, including obsessive compulsive disorder and major depressive disorder. In contrast, no prospective associations were identified with DNAm at birth. Taken together, results of this study revealed some evidence of an association between DNAm at school-age and GPF. Future research with larger samples is needed to further assess DNAm variation associated with GPF.

Publisher

Cold Spring Harbor Laboratory

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