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A genome-wide association study identifies novel risk loci for type 2 diabetes

机译:全基因组关联研究确定了2型糖尿病的新风险位点

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Type 2 diabetes mellitus results from the interaction of environmental factors with a combination of genetic variants, most of which were hitherto unknown. A systematic search for these variants was recently made possible by the development of high-density arrays that permit the genotyping of hundreds of thousands of polymorphisms. We tested 392,935 single-nucleotide polymorphisms in a French case-control cohort. Markers with the most significant difference in genotype frequencies between cases of type 2 diabetes and controls were fast-tracked for testing in a second cohort. This identified four loci containing variants that confer type 2 diabetes risk, in addition to confirming the known association with the TCF7L2 gene. These loci include a non-synonymous polymorphism in the zinc transporter SLC30A8, which is expressed exclusively in insulin-producing β-cells, and two linkage disequilibrium blocks that contain genes potentially involved in p-cell development or function (IDE-KIFV-HHEX and EXT2-ALX4). These associations explain a substantial portion of disease risk and constitute proof of principle for the genome-wide approach to the elucidation of complex genetic traits.
机译:2型糖尿病是环境因素与多种遗传变异相互作用的结果,其中大多数是迄今为止未知的。最近,通过开发允许对成千上万的多态性进行基因分型的高密度阵列,对这些变异进行系统的搜索成为可能。我们在法国病例对照队列中测试了392,935个单核苷酸多态性。在第二批队列中快速追踪了2型糖尿病病例与对照组之间基因型频率差异最大的标记。除了确认与TCF7L2基因的已知关联外,这还确定了四个含有2型糖尿病风险的变异基因座。这些基因座包括在锌转运蛋白SLC30A8中的非同义多态性(仅在产生胰岛素的β细胞中表达),以及两个连锁不平衡嵌段,其包含可能参与p细胞发育或功能的基因(IDE-KIFV-HHEX和EXT2-ALX4)。这些关联解释了疾病风险的很大一部分,并构成了阐明复杂遗传特征的全基因组方法的原理证明。

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