Methylation Status of GLP2R, LEP and IRS2 in Small for Gestational Age Children with and without Catch-up Growth

J Clin Res Pediatr Endocrinol. 2021 Jun 2;13(2):136-145. doi: 10.4274/jcrpe.galenos.2020.2020.0070. Epub 2020 Sep 17.

Abstract

Objective: In small for gestational age (SGA) children, catch-up growth could be influenced by methylation of several genes involved in metabolism. Epigenetics may influence the development of metabolic diseases in adulthood. To compare the methylation of leptin (LEP), glucagon-like peptide-2 receptor (GLP2R), insulin receptor substrate-2 (IRS2) in SGA patients with and without catch-up growth.

Methods: Observational prospective study of SGA children. Demographical and clinical variables were collected from clinical records and parents’ questionnaire. Methylation status of LEP, IRS2, and GLP2R promoters was evaluated in DNA extracted from patient and one parent saliva samples.

Results: Forty-eight SGA patients were included. Twenty-six (54.2%) had catch-up growth phenotype and 22 (45.8%) did not. The median age was 5.2 years [RIC 4.1-6.8] without difference between groups (p=0.306). The catch-up group had increased appetite (42.3% vs 9.1%, p=0.008), family history of dyslipidemia (42.3% vs 27.3%) and diabetes (34.6% vs 22.7%) compared to non-catch-up group. Catch-up patients had significantly larger waist circumference compared to non-catch-up group (median 55 cm [RIC 52-58] versus median 49.5 cm [RIC46-52]; p<0.001). LEP and GLP2R were methylated in all samples. IRS2 was methylated in 60% of SGA patients without difference between groups (p=0.520).

Conclusion: There is no association between IRS2 methylation and catch-up growth among SGA patients. LEP and GLP2R were methylated in all SGA patients. Gene methylation may be implicated in metabolic disease later in life. More studies should be performed to confirm this hypothesis.

Keywords: Low birth weight; infant; small for gestational age; epigenetics; methylation; DNA; insulin resistance.

Publication types

  • Observational Study

MeSH terms

  • Child
  • Child Development / physiology*
  • Child, Preschool
  • DNA Methylation*
  • Epigenesis, Genetic / genetics
  • Female
  • Glucagon-Like Peptide-2 Receptor / metabolism*
  • Humans
  • Infant, Newborn
  • Infant, Small for Gestational Age / metabolism*
  • Insulin Receptor Substrate Proteins / metabolism*
  • Leptin / metabolism*
  • Male
  • Prospective Studies

Substances

  • GLP2R protein, human
  • Glucagon-Like Peptide-2 Receptor
  • IRS2 protein, human
  • Insulin Receptor Substrate Proteins
  • LEP protein, human
  • Leptin