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Variants of CDKAL1 and IGF2BP2 affect first-phase insulin secretion during hyperglycaemic clamps

机译:CDKAL1和IGF2BP2的变体影响高血糖钳制过程中的第一阶段胰岛素分泌

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Aims/hypothesis: Genome-wide association studies have recently identified novel type 2 diabetes susceptibility gene regions. We assessed the effects of six of these regions on insulin secretion as determined by a hyperglycaemic clamp. Methods: Variants of the HHEX/IDE, CDKAL1, SLC30A8, IGF2BP2 and CDKN2A/CDKN2B genes were genotyped in a cohort of 146 participants with NGT and 126 with IGT from the Netherlands and Germany, who all underwent a hyperglycaemic clamp at 10 mmol/l glucose. Results: Variants of CDKAL1 and IGF2BP2 were associated with reductions in first-phase insulin secretion (34% and 28%, respectively). The disposition index was also significantly reduced. For gene regions near HHEX/IDE, SLC30A8 and CDKN2A/CDKN2B we did not find significant associations with first-phase insulin secretion (7-18% difference between genotypes; all p>0.3). None of the variants showed a significant effect on second-phase insulin secretion in our cohorts (2-8% difference between genotypes, all p>0.3). Furthermore, the gene variants were not associated with the insulin sensitivity index. Conclusions: Variants of CDKAL1 and IGF2BP2 attenuate the first phase of glucose-stimulated insulin secretion but show no effect on the second phase of insulin secretion. Our results, based on hyperglycaemic clamps, provide further insight into the pathogenic mechanism behind the association of these gene variants with type 2 diabetes. © 2008 Springer-Verlag.
机译:目的/假设:全基因组关联研究最近发现了新型2型糖尿病易感基因区域。我们通过高血糖钳夹评估了其中六个区域对胰岛素分泌的影响。方法:在来自荷兰和德国的146名NGT参与者和126名IGT参与者中,对HHEX / IDE,CDKAL1,SLC30A8,IGF2BP2和CDKN2A / CDKN2B基因的变种进行了基因分型,他们均接受了10 mmol / l的高血糖钳制葡萄糖。结果:CDKAL1和IGF2BP2的变异与第一阶段胰岛素分泌减少有关(分别为34%和28%)。处置指数也显着降低。对于HHEX / IDE,SLC30A8和CDKN2A / CDKN2B附近的基因区域,我们未发现与第一阶段胰岛素分泌显着相关(基因型之间的差异为7-18%;所有p> 0.3)。在我们的队列中,所有变体均未显示对第二阶段胰岛素分泌有显着影响(基因型之间差异为2-8%,所有p> 0.3)。此外,基因变异与胰岛素敏感性指数无关。结论:CDKAL1和IGF2BP2的变体减弱了葡萄糖刺激的胰岛素分泌的第一阶段,但对胰岛素分泌的第二阶段没有影响。基于高血糖钳夹的我们的结果,提供了对这些基因变异与2型糖尿病相关性背后的致病机制的进一步了解。 ©2008 Springer-Verlag。

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