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.
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.
Abstract:
Folate deficiency is implicated in the causation of neural tube defects (NTDs). The preventive effect of periconceptional folic acid supplement use is partially explained by the treatment of a deranged folate-dependent one carbon metabolism, which provides methyl groups for DNA-methylation as an epigenetic mechanism. Here, we hypothesize that variations in DNA-methylation of genes implicated in the development of NTDs and embryonic growth are part of the underlying mechanism. In 48 children with a neural tube defect and 62 controls from a Dutch case-control study and 34 children with a neural tube defect and 78 controls from a Texan case-control study, we measured the DNA-methylation levels of imprinted candidate genes (IGF2-DMR, H19, KCNQ1OT1) and non-imprinted genes (the LEKR/CCNL gene region associated with birth weight, and MTHFR and VANGL1 associated with NTD). We used the MassARRAY EpiTYPER assay from Sequenom for the assessment of DNA-methylation. Linear mixed model analysis was used to estimate associations between DNA-methylation levels of the genes and a neural tube defect. In the Dutch study group, but not in the Texan study group we found a significant association between the risk of having an NTD and DNA methylation levels of MTHFR (absolute decrease in methylation of -0.33% in cases, P-value = 0.001), and LEKR/CCNL (absolute increase in methylation: 1.36% in cases, P-value = 0.048), and a borderline significant association for VANGL (absolute increase in methylation: 0.17% in cases, P-value = 0.063). Only the association between MTHFR and NTD-risk remained significant after multiple testing correction. The associations in the Dutch study were not replicated in the Texan study. We conclude that the associations between NTDs and the methylation of the MTHFR gene, and maybe VANGL and LEKKR/CNNL, are in line with previous studies showing polymorphisms in the same genes in association with NTDs and embryonic development, respectively.
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