4.5 Article

Association between insulin secretion, insulin sensitivity and type 2 diabetes susceptibility variants identified in genome-wide association studies

期刊

ACTA DIABETOLOGICA
卷 46, 期 3, 页码 217-226

出版社

SPRINGER-VERLAG ITALIA SRL
DOI: 10.1007/s00592-008-0080-5

关键词

Glucose tolerance; Insulin secretion; Insulin sensitivity; Diabetes-associated polymorphisms

资金

  1. Medical Research Council of Canada
  2. Canadian Institutes for Health Research [PG-11811, MT-13960, GR-15187]
  3. Canadian Institutes of Health Research (CIHR)-New Emerging Team Program ( NET) [OHN-63276]
  4. Canadian Diabetes Association
  5. Gary A. Bray Chair in Nutrition
  6. Medical Research Council [MC_U106188470] Funding Source: researchfish
  7. MRC [MC_U106188470] Funding Source: UKRI

向作者/读者索取更多资源

Several single nucleotide polymorphisms (SNPs) for type 2 diabetes mellitus (T2DM) risk have been identified by genome wide association studies (GWAS). The objective of the present study was to investigate the impact of these SNPs on T2DM intermediate phenotypes in order to clarify the physiological mechanisms through which they exert their effects on disease etiology. We analysed 23 SNPs in 9 T2DM genes (CDKAL1, CDKN2B, HHEX/IDE, IGF2BP2, KCNJ11, SLC30A8, TCF2, TCF7L2 and WFS1) in a maximum of 712 men and women from the Quebec Family Study. The participants underwent a 75 g oral glucose tolerance test (OGTT) and were measured for glucose, insulin and C-peptide levels. Indices of insulin sensitivity and insulin secretion were derived from fasting and OGTT measurements. We confirmed the significant associations of variants in CDKAL1, CDKN2B, HHEX/IDE, KCNJ11 and TCF7L2 with insulin secretion and also found associations of some of these variants with insulin sensitivity and glucose tolerance. IGF2BP2 and SLC30A8 SNPs were not associated with insulin secretion but were with insulin sensitivity and glucose tolerance (0.002 a parts per thousand currency sign P a parts per thousand currency sign 0.02). To examine the joint effects of these variants and their contribution to T2DM endophenotypes variance, stepwise regression models were used and the model R (2) was computed. The variance in the phenotypes explained by combinations of variants ranged from 2.0 to 8.5%. Diabetes-associated variants in CDKAL1, CDKN2B, HHEX/IDE, IGF2BP2, KCNJ11, SLC30A8 and TCF7L2 are associated with physiological alterations leading to T2DM, such as glucose intolerance, impaired insulin secretion or insulin resistance, supporting their role in the disease aetiology. These variants were found to account for 2.0-8.5% of the variance of T2DM-related traits.

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