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Elevated polygenic burden for autism is associated with differential DNA methylation at birth

iPSYCH-Broad ASD Group, Eilís Hannon, Diana Schendel, Christine Ladd‐Acosta, Jakob Grove, Christine Søholm Hansen, Shan V. Andrews, David M. Hougaard, Michaeline Bresnahan, Ole Mors, Mads V. Hollegaard, Marie Bækvad‐Hansen, Mady Hornig, Preben Bo Mortensen, Anders D. Børglum

Genome Medicine · 2018 · ▲ 124 citations

Abstract

BACKGROUND: Autism spectrum disorder (ASD) is a severe neurodevelopmental disorder characterized by deficits in social communication and restricted, repetitive behaviors, interests, or activities. The etiology of ASD involves both inherited and environmental risk factors, with epigenetic processes hypothesized as one mechanism by which both genetic and non-genetic variation influence gene regulation and pathogenesis. The aim of this study was to identify DNA methylation biomarkers of ASD detectable at birth. METHODS: We quantified neonatal methylomic variation in 1263 infants-of whom ~ 50% went on to subsequently develop ASD-using DNA isolated from archived blood spots taken shortly after birth. We used matched genotype data from the same individuals to examine the molecular consequences of ASD-associated genetic risk variants, identifying methylomic variation associated with elevated polygenic burden for ASD. In addition, we performed DNA methylation quantitative trait loci (mQTL) mapping to prioritize target genes from ASD GWAS findings. RESULTS: We identified robust epigenetic signatures of gestational age and prenatal tobacco exposure, confirming the utility of DNA methylation data generated from neonatal blood spots. Although we did not identify specific loci showing robust differences in neonatal DNA methylation associated with later ASD, there was a significant association between increased polygenic burden for autism and methylomic variation at specific loci. Each unit of elevated ASD polygenic risk score was associated with a mean increase in DNA methylation of - 0.14% at two CpG sites located proximal to a robust GWAS signal for ASD on chromosome 8. CONCLUSIONS: This study is the largest analysis of DNA methylation in ASD undertaken and the first to integrate genetic and epigenetic variation at birth. We demonstrate the utility of using a polygenic risk score to identify molecular variation associated with disease, and of using mQTL to refine the functional and regulatory variation associated with ASD risk variants.

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Provenance

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OpenAlex
DOI
10.1186/s13073-018-0527-4
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2026-07-22 MST

Cite this

APA
Group, I.A., Hannon, E., Schendel, D., Ladd‐Acosta, C., Grove, J., Hansen, C.S., Andrews, S.V., Hougaard, D.M., Bresnahan, M., Mors, O., Hollegaard, M.V., Bækvad‐Hansen, M., Hornig, M., Mortensen, P.B., Børglum, A.D., Werge, T., Pedersen, M.G., Nordentoft, M., Buxbaum, J.D., &amp; Fallin, M.D. (2018). Elevated polygenic burden for autism is associated with differential DNA methylation at birth. <em>Genome Medicine</em>. https://doi.org/10.1186/s13073-018-0527-4
Vancouver
Group IA, Hannon E, Schendel D, Ladd‐Acosta C, Grove J, Hansen CS, et al. Elevated polygenic burden for autism is associated with differential DNA methylation at birth. Genome Medicine. 2018. doi:10.1186/s13073-018-0527-4.
BibTeX
@article{ipsychbroad2018Elevat, title = {Elevated polygenic burden for autism is associated with differential DNA methylation at birth}, author = {iPSYCH-Broad ASD Group and Eilís Hannon and Diana Schendel and Christine Ladd‐Acosta and Jakob Grove and Christine Søholm Hansen and Shan V. Andrews and David M. Hougaard and Michaeline Bresnahan and Ole Mors and Mads V. Hollegaard and Marie Bækvad‐Hansen and Mady Hornig and Preben Bo Mortensen and Anders D. Børglum and Thomas Werge and Marianne Giørtz Pedersen and Merete Nordentoft and Joseph D. Buxbaum and M. Daniele Fallin and Jonas Bybjerg‐Grauholm and Abraham Reichenberg and Jonathan Mill}, journal = {Genome Medicine}, year = {2018}, doi = {10.1186/s13073-018-0527-4}, }

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