Methylation Status of CYP27B1 and IGF2 Correlate to BMI SDS in Children with Obesity

Obes Facts. 2017;10(4):353-362. doi: 10.1159/000477462. Epub 2017 Aug 9.

Abstract

Objective: Worldwide increasing childhood obesity is due to interactions between environmental and genetic factors, linked together by epigenetic mechanisms such as DNA methylation.

Methods: 82 obese children (>95th BMI percentile , age: 3-18 years) were included. Anthropometric data, metabolic parameters, 25-OH vitamin D (25OHD), and pubertal status were recorded, 24-hour blood pressure monitoring was performed. BMI standard deviation score (SDS) was calculated. Using candidate gene approach, obesity- (insulin-like growth factor 2 (IGF2), proopiomelanocortin (POMC)) and vitamin D metabolism-related genes (1-alfa-hydroxylase (CYP27B1), VDR) regulated by DNA methylation were selected. After isolating DNA from peripheral blood, bisulfite conversion, bisulfite specific polymerase chain reaction (BS-PCR), and pyrosequencing were carried out.

Results: No significant correlation between 25-OHD and metabolic parameters and DNA methylation status, but a tendency of positive correlation between VDR methylation status and 25-OHD (r = 0.2053,p = 0.066) were observed. Significant positive correlations between BMI SDS and CYP27B1 hypermethylation (r = 0.2371,p = 0.0342) and a significant negative correlation between IGF2 hypomethylation and BMI SDS (r = -0.305,p = 0.0059) were found. Conclusions Rate of obesity shows correlation with DNA methylation. Hypomethylation of IGF2 and hypermethylation of CYP27B1 genes might positively influence the rate of BMI observed in obese children.

Keywords: Childhood obesity; DNA methylation; Insulin-like growth factor 2; Vitamin D.

MeSH terms

  • 25-Hydroxyvitamin D3 1-alpha-Hydroxylase / genetics*
  • Adolescent
  • Body Mass Index
  • Child
  • Child, Preschool
  • DNA Methylation*
  • Epigenesis, Genetic / genetics*
  • Female
  • Humans
  • Insulin-Like Growth Factor II / genetics*
  • Male
  • Pediatric Obesity / genetics*
  • Receptors, Calcitriol / genetics

Substances

  • IGF2 protein, human
  • Receptors, Calcitriol
  • Insulin-Like Growth Factor II
  • 25-Hydroxyvitamin D3 1-alpha-Hydroxylase