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Updated: Jul 5, 2025

Sample Preparation to Bioinformatics Analysis of DNA Methylation: Association Strategy for Obesity and Related Trait Studies
Published on: May 6, 2022
Methylation profiles at birth linked to early childhood obesity
Delphine Lariviere1, Sarah J C Craig2,3, Ian M Paul3,4
1Department of Biochemistry and Molecular Biology, Penn State University, University Park, PA.
Insights
Newborn epigenetics, specifically DNA methylation in cord blood and placenta, can predict infant weight gain and obesity risk. This methylation risk score identifies infants at higher risk for childhood obesity.
Area of Science:
- Epigenetics and Developmental Biology
- Pediatric Health and Nutrition
- Genomics and Molecular Biology
Background:
- Childhood obesity is a major global health issue requiring identification of early risk factors.
- Epigenetic factors, such as DNA methylation, are increasingly recognized as potential contributors to obesity risk.
- Understanding early-life epigenetic signatures is crucial for developing effective obesity interventions.
Approach:
- Analyzed genome-wide DNA methylation profiles in cord blood and placenta from 48 infants using the Illumina Infinium MethylationEpic chip.
- Correlated methylation profiles at birth with infant weight outcomes (conditional weight gain, BMI, weight-for-length) at six months.
- Integrated child/maternal health and environmental data into regression analyses to identify predictive methylation patterns.
Key Points:
- Identified 23 genes in cord blood and 10 in placenta with methylation profiles predictive of infant weight outcomes.
- Methylation profiles of three cord blood genes (PLIN4, UBE2F, PPP1R16B) were linked to all three weight outcomes and validated in an independent cohort.
- Developed a Methylation Risk Score (MRS) to identify infants at high risk for childhood obesity.
Conclusions:
- Infant DNA methylation patterns at birth are significantly associated with early-life weight trajectories and obesity risk.
- Specific genes and a novel MRS show promise for early identification and intervention strategies for childhood obesity.
- Further functional studies are warranted to elucidate the role of identified genes in obesity development.
Abstract:
Childhood obesity represents a significant global health concern and identifying risk factors is crucial for developing intervention programs. Many 'omics' factors associated with the risk of developing obesity have been identified, including genomic, microbiomic, and epigenomic factors. Here, using a sample of 48 infants, we investigated how the methylation profiles in cord blood and placenta at birth were associated with weight outcomes (specifically, conditional weight gain, body mass index, and weight-for-length ratio) at age six months. We characterized genome-wide DNA methylation profiles using the Illumina Infinium MethylationEpic chip, and incorporated information on child and maternal health, and various environmental factors into the analysis. We used regression analysis to identify genes with methylation profiles most predictive of infant weight outcomes, finding a total of 23 relevant genes in cord blood and 10 in placenta. Notably, in cord blood, the methylation profiles of three genes (PLIN4, UBE2F, and PPP1R16B) were associated with all three weight outcomes, which are also associated with weight outcomes in an independent cohort suggesting a strong relationship with weight trajectories in the first six months after birth. Additionally, we developed a Methylation Risk Score (MRS) that could be used to identify children most at risk for developing childhood obesity. While many of the genes identified by our analysis have been associated with weight-related traits (e.g., glucose metabolism, BMI, or hip-to-waist ratio) in previous genome-wide association and variant studies, our analysis implicated several others, whose involvement in the obesity phenotype should be evaluated in future functional investigations.
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