Increased methylation at differentially methylated region of GNASin infants born to gestational diabetes
Increased methylation at differentially methylated region of GNASin infants born to gestational diabetes
Offspring of pregnancy complicated with gestational diabetes (GDM) are at high risk for metabolic diseases. The mechanisms behind the association of intrauterine exposure to GDM and high risk of health problems in later life remain largely unknown. The aim of this study was to clarify the alteration in methylation levels at differentially methylated regions (DMRs) of GNAS and IGF2 in fetuses of GDM women and to explore the possible mechanisms linking maternal GDM with high risk of metabolic diseases in later life of GDM offspring.Lymphocytes were isolated from umbilical cord blood of infants born to 87 women with GDM and 81 women with normal pregnancy. Genomic DNA was extracted and DNA methylation levels of GNAS and IGF2 DMRs were determined by Massarray quantitative methylation analysis.The methylation levels were detected in 7 CpG sites of GNAS DMRs and 6 sites of IGF2 DMRs. Methylation levels were significantly higher at sites 4, 5 and 7 of GNAS DMR in GDM compared to normal pregnancy (P = 0.007, 0.008 and 0.008, respectively). The methylation level at site 4 of GNAS was significantly correlated with the presence of GDM (P = 0.003), the methylation levels at site 5 and 7 were significantly correlated with the presence of GDM (P = 0.002 for both) and gestational age (P = 0.027 for both). There was no significant difference in any sites of IGF2 DMR (P > 0.05 for all).We concluded maternal GDM-induced hypermethylation at GNAS DMR and this condition may be among the mechanisms associating maternal GDM with increased risk of metabolic diseases in later life of offspring.
- Fudan University China (People's Republic of)
- Women's Hospital School Of Medicine Zhejiang University China (People's Republic of)
- Zhejiang Ocean University China (People's Republic of)
- Shanghai Jiao Tong University China (People's Republic of)
- Zhejiang University China (People's Republic of)
Adult, Infant, Newborn, DNA Methylation, Fetal Blood, Diabetes, Gestational, Insulin-Like Growth Factor II, Pregnancy, Genetics, Chromogranins, GTP-Binding Protein alpha Subunits, Gs, Humans, Genetics(clinical), CpG Islands, Female, Metabolism, Inborn Errors, Research Article
Adult, Infant, Newborn, DNA Methylation, Fetal Blood, Diabetes, Gestational, Insulin-Like Growth Factor II, Pregnancy, Genetics, Chromogranins, GTP-Binding Protein alpha Subunits, Gs, Humans, Genetics(clinical), CpG Islands, Female, Metabolism, Inborn Errors, Research Article
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