DNA methylation and type 2 diabetes: a systematic review

Clin Epigenetics. 2024 May 16;16(1):67. doi: 10.1186/s13148-024-01670-6.

Abstract

Objective: DNA methylation influences gene expression and function in the pathophysiology of type 2 diabetes mellitus (T2DM). Mapping of T2DM-associated DNA methylation could aid early detection and/or therapeutic treatment options for diabetics.

Design: A systematic literature search for associations between T2DM and DNA methylation was performed. Prospero registration ID: CRD42020140436.

Methods: PubMed and ScienceDirect databases were searched (till October 19, 2023). Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines and New Castle Ottawa scale were used for reporting the selection and quality of the studies, respectively.

Result: Thirty-two articles were selected. Four of 130 differentially methylated genes in blood, adipose, liver or pancreatic islets (TXNIP, ABCG1, PPARGC1A, PTPRN2) were reported in > 1 study. TXNIP was hypomethylated in diabetic blood across ethnicities. Gene enrichment analysis of the differentially methylated genes highlighted relevant disease pathways (T2DM, type 1 diabetes and adipocytokine signaling). Three prospective studies reported association of methylation in IGFBP2, MSI2, FTO, TXNIP, SREBF1, PHOSPHO1, SOCS3 and ABCG1 in blood at baseline with incident T2DM/hyperglycemia. Sex-specific differential methylation was reported only for HOOK2 in visceral adipose tissue (female diabetics: hypermethylated, male diabetics: hypomethylated). Gene expression was inversely associated with methylation status in 8 studies, in genes including ABCG1 (blood), S100A4 (adipose tissue), PER2 (pancreatic islets), PDGFA (liver) and PPARGC1A (skeletal muscle).

Conclusion: This review summarizes available evidence for using DNA methylation patterns to unravel T2DM pathophysiology. Further validation studies in diverse populations will set the stage for utilizing this knowledge for identifying early diagnostic markers and novel druggable pathways.

Keywords: DNA methylation; Epigenetics; Epigenome-wide association studies; Type 2 diabetes.

Publication types

  • Systematic Review

MeSH terms

  • Carrier Proteins
  • DNA Methylation* / genetics
  • Diabetes Mellitus, Type 2* / genetics
  • Epigenesis, Genetic / genetics
  • Female
  • Humans
  • Male

Substances

  • Carrier Proteins
  • TXNIP protein, human