4.7 Article

Epigenetic Changes in Islets of Langerhans Preceding the Onset of Diabetes

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DIABETES
卷 69, 期 11, 页码 2503-2517

出版社

AMER DIABETES ASSOC
DOI: 10.2337/db20-0204

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资金

  1. Federal Ministry of Science, Germany (BMBF:DZD grant) [82DZD00302]
  2. European Union [SOC 95201408 05 F02]
  3. German Cancer Aid [70-2488-Ha I]
  4. European Community [SOC 98200769 05 F02]
  5. German Federal Ministry of Education and Research (BMBF) [82DZD00302]
  6. State of Brandenburg
  7. Novo Nordisk Foundation
  8. Swedish Research Council
  9. Region Skane
  10. Medical Training and Research Agreement (ALF)
  11. ERC-Co Grant (PAINTBOX) [725840]
  12. European Foundation for the Study of Diabetes
  13. EXODIAB
  14. Swedish Foundation for Strategic Research [IRC15-0067]
  15. Swedish Diabetes Foundation grants [DIA2018-328]
  16. European Research Council (ERC) [725840] Funding Source: European Research Council (ERC)

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The identification of individuals with a high risk of developing type 2 diabetes (T2D) is fundamental for prevention. Here, we used a translational approach and prediction criteria to identify changes in DNA methylation visible before the development of T2D. Islets of Langerhans were isolated from genetically identical 10-week-old female New Zealand Obese mice, which differ in their degree of hyperglycemia and in liver fat content. The application of a semiexplorative approach identified 497 differentially expressed and methylated genes (P= 6.42e-09, hypergeometric test) enriched in pathways linked to insulin secretion and extracellular matrix-receptor interaction. The comparison of mouse data with DNA methylation levels of incident T2D cases from the prospective European Prospective Investigation of Cancer (EPIC)-Potsdam cohort, revealed 105 genes with altered DNA methylation at 605 cytosine-phosphate-guanine (CpG) sites, which were associated with future T2D.AKAP13,TENM2,CTDSPL,PTPRN2, andPTPRSshowed the strongest predictive potential (area under the receiver operating characteristic curve values 0.62-0.73). Among the new candidates identified in blood cells, 655 CpG sites, located in 99 genes, were differentially methylated in islets of humans with T2D. Using correction for multiple testing detected 236 genes with an altered DNA methylation in blood cells and 201 genes in diabetic islets. Thus, the introduced translational approach identified novel putative biomarkers for early pancreatic islet aberrations preceding T2D.

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