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Published on: July 18, 2014
Maternal LINE-1 DNA Methylation and Congenital Heart Defects in Down Syndrome
Ivana Babić Božović1, Aleksandra Stanković2, Maja Živković2
1Department of Medical Biology and Genetics, School of Medicine, University of Rijeka, Rijeka, Croatia.
Insights
Maternal LINE-1 DNA methylation was not directly linked to congenital heart defects (CHD) in children with Down syndrome (DS). However, maternal factors like MTHFR genotype, diet, and BMI significantly influenced LINE-1 methylation in mothers of DS children with CHD.
Area of Science:
- Epigenetics
- Human Genetics
- Developmental Biology
Background:
- Down syndrome (DS) is frequently associated with congenital heart defects (CHD), affecting 40-60% of affected children.
- Maternal factors may influence epigenetic modifications like LINE-1 methylation, potentially impacting fetal development and CHD risk in DS pregnancies.
Purpose of the Study:
- To investigate the association between maternal LINE-1 DNA methylation and CHD occurrence in children with DS.
- To evaluate the impact of maternal endogenous (MTHFR C677T polymorphism, age) and exogenous (lifestyle, diet) factors on LINE-1 methylation and CHD risk in DS.
Main Methods:
- Study included 90 mothers of children with DS (DS-CHD+ and DS-CHD-).
- LINE-1 DNA methylation analyzed using the MethyLight method in peripheral blood lymphocytes.
- MTHFR C677T polymorphism genotyped via PCR-RFLP.
Main Results:
- No significant difference in LINE-1 methylation was observed between mothers with and without CHD in their DS children (P=0.997).
- Maternal MTHFR genotype/diet combination and BMI were significant independent predictors of LINE-1 DNA methylation in mothers of DS children with CHD (explaining 72% of variance).
- Higher BMI (≥30 kg/m2) and low folate intake combined with CT+TT MTHFR genotype were associated with significantly lower LINE-1 methylation.
Conclusions:
- Maternal LINE-1 methylation is not directly associated with CHD in children with DS.
- Maternal MTHFR genotype, dietary folate intake, and BMI are significant determinants of LINE-1 DNA methylation in mothers of DS children with CHD.
- A multifactorial approach is needed to understand maternal influences on epigenetic modifications and associated pathologies in children with DS.
Abstract:
Background: Down syndrome (DS) is one of the most common chromosomal abnormalities associated with congenital heart defects (CHD), with approximately 40 to 60% of cases showing cardiac defects. This study assessed (i) the association between maternal LINE-1 methylation and the occurrence of CHDs in children with DS and (ii) the impact of endogenous maternal factors (MTHFR C677T polymorphism and maternal age) and exogenous maternal factors (cigarette smoking, alcohol intake, medication use, body mass index and dietary habits such as folate intake) on maternal LINE-1 methylation and on the occurrence of CHD in children with DS. Patients and Methods: The study included 90 mothers of children with DS of maternal origin (49% DS-CHD+ mothers/51% DS-CHD- mothers). LINE-1 DNA methylation was analyzed in peripheral blood lymphocytes by quantification of LINE-1 methylation using the MethyLight method. MTHFR C677T polymorphism genotyping was performed using PCR-RFLP. Results: LINE-1 methylation was not significantly different between DS-CHD+ and DS-CHD- mothers (P = 0.997). Combination of MTHFR C677T genotype/diet and BMI were significant independent predictors of LINE-1 DNA methylation in DS-CHD+ mothers (β -0.40, P = 0.01 and β -0.32, P = 0.03, respectively). In the analyzed multivariate model (model P = 0.028), these two factors explained around 72% of the variance in LINE-1 DNA methylation in mothers of children with DS and CHD. The group with the highest BMI (≥30 kg/m2) had significantly lower LINE-1 methylation than the group with normal BMI (Bonferroni post hoc P = 0.03) and the overweight group (Bonferroni post hoc P = 0.04). The lowest LINE-1 DNA methylation values were found in DS-CHD+ mothers with the CT+TT genotype and a low-folate diet; the values were significantly lower than the values in mothers with the CC genotype and a folate-rich diet (Bonferroni post hoc P = 0.04). Conclusion: Association between maternal LINE-1 methylation and CHD in children with DS was not found. Study showed that the MTHFR genotype/diet combination and BMI were significantly associated with LINE-1 methylation in mothers of children with DS-CHD+. These results highlight the need for a multifactorial approach to assess the roles of endogenous and exogenous maternal factors in maternal LINE-1 DNA methylation and the consequent pathologies in children. More extensive studies in a larger sample may help elucidate these relationships.
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