Newborn adiposity is associated with cord blood DNA methylation at IGF1R and KLF7

Author:

Josefson Jami L.1ORCID,Kuang Alan2ORCID,Allard Catherine3ORCID,Bianco Monica E.1ORCID,Lowe William4ORCID,Scholtens Denise M.2ORCID,Bouchard Luigi3ORCID,Hivert Marie‐France35ORCID

Affiliation:

1. Department of Pediatrics, Northwestern University Feinberg School of Medicine, Division of Endocrinology Ann & Robert H. Lurie Children's Hospital of Chicago Chicago Illinois USA

2. Department of Preventive Medicine Northwestern University Feinberg School of Medicine Chicago Illinois USA

3. Centre de Recherche du Centre hospitalier universitaire de Sherbrooke (CHUS) Sherbrooke Québec Canada

4. Department of Medicine Northwestern University Feinberg School of Medicine Chicago Illinois USA

5. Department of Population Medicine, Harvard Pilgrim Health Care Institute Harvard Medical School; Diabetes Unit, Massachusetts General Hospital Boston Massachusetts USA

Abstract

AbstractObjectiveThis study aimed to identify whether cord blood DNA methylation at specific loci is associated with neonatal adiposity, a key risk factor for childhood obesity.MethodsAn epigenome‐wide association study was conducted using the Hyperglycemia and Adverse Pregnancy Outcome (HAPO) Study as a discovery sample. Linear regression models adjusted for maternal and offspring covariates and cell counts were used to analyze associations between neonatal adiposity as measured by sum of three skinfold thicknesses and cord blood DNA methylation. Assays were performed with Illumina EPIC arrays (791,359 CpG sites after quality control). Replication was performed in an independent cohort, Genetics of Glucose regulation in Gestation and Growth (Gen3G).ResultsIn 2740 HAPO samples, significant associations were identified at 89 CpG sites after accounting for multiple testing (Bonferroni‐adjusted p < 0.05). Replication analyses conducted in 139 Gen3G participants confirmed associations for seven CpG sites. These included IGF1R, which encodes a transmembrane receptor involved in cell growth and survival that binds insulin‐like growth factor I and insulin, and KLF7, which encodes a regulator of cell proliferation and inhibitor of adipogenesis; both are key regulators of growth during fetal life.ConclusionsThese findings support epigenetic mechanisms in the developmental origins of neonatal adiposity and as potential biomarkers of metabolic disease risk.

Funder

Eunice Kennedy Shriver National Institute of Child Health and Human Development

Fonds de Recherche du Québec - Santé

American Diabetes Association

National Institute of Diabetes and Digestive and Kidney Diseases

Publisher

Wiley

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