Epigenetic profiles in children with a neural tube defect; a case-control study in two populations

Lisette Stolk1, Marieke I Bouwland-Both, Nina H van Mil

  • 1Department of Internal Medicine, Erasmus MC, Rotterdam, The Netherlands.

Plos One
|November 14, 2013
PubMed

Insights

DNA methylation variations in genes like MTHFR may contribute to neural tube defects (NTDs). This study found associations in a Dutch cohort, suggesting epigenetic factors in NTD development.

Area of Science:

  • Epigenetics
  • Developmental Biology
  • Genetics

Background:

  • Folate deficiency is linked to neural tube defects (NTDs).
  • Folic acid supplementation's preventive effect may involve folate-dependent one-carbon metabolism and DNA methylation.
  • Epigenetic mechanisms, specifically DNA methylation, are hypothesized to play a role in NTD development.

Purpose of the Study:

  • To investigate the hypothesis that variations in DNA methylation of specific genes are involved in NTD causation.
  • To assess DNA methylation levels in imprinted and non-imprinted genes in children with and without NTDs.

Main Methods:

  • Case-control studies were conducted in Dutch and Texan populations.
  • DNA methylation levels of candidate genes (IGF2-DMR, H19, KCNQ1OT1, LEKR/CCNL, MTHFR, VANGL1) were measured using the MassARRAY EpiTYPER assay.
  • Linear mixed model analysis was employed to determine associations between DNA methylation and NTD risk.

Main Results:

  • In the Dutch cohort, significant associations were found between NTD risk and DNA methylation levels of MTHFR and LEKR/CCNL.
  • A borderline significant association was observed for VANGL1 in the Dutch group.
  • These associations were not replicated in the Texan cohort, and only the MTHFR association remained significant after multiple testing correction.

Conclusions:

  • The study suggests a potential association between DNA methylation of MTHFR, and possibly VANGL1 and LEKKR/CNNL, and the risk of NTDs.
  • These findings align with previous research linking gene polymorphisms in these regions to NTDs and embryonic development.
  • The lack of replication in the Texan cohort highlights the need for further investigation into population-specific epigenetic factors.