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Systematic Evaluation of Genes and Genetic Variants Associated with Type 1 Diabetes Susceptibility

机译:与1型糖尿病易感性相关的基因和遗传变异的系统评价

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Genome-wide association studies have found 60 loci that confer genetic susceptibility to type 1 diabetes (T1D). Many of these are defined only by anonymous single nucleotide polymorphisms: the underlying causative genes, as well as the molecular bases by which they mediate susceptibility, are not known. Identification of how these variants affect the complex mechanisms contributing to the loss of tolerance is a challenge. In this study, we performed systematic analyses to characterize these variants. First, all known genes in strong linkage disequilibrium ( r 2 0.8) with the reported single nucleotide polymorphisms for each locus were tested for commonly occurring nonsynonymous variations. We found only a total of 22 candidate genes at 16 T1D loci with common nonsynonymous alleles. Next, we performed functional studies to examine the effect of non-HLA T1D risk alleles on regulating expression levels of genes in four different cell types: EBV-transformed B cell lines (resting and 6 h PMA stimulated) and purified CD4+ and CD8+ T cells. We mapped cis -acting expression quantitative trait loci and found 24 non-HLA loci that affected the expression of 31 transcripts significantly in at least one cell type. Additionally, we observed 25 loci that affected 38 transcripts in trans . In summary, our systems genetics analyses defined the effect of T1D risk alleles on levels of gene expression and provide novel insights into the complex genetics of T1D, suggesting that most of the T1D risk alleles mediate their effect by influencing expression of multiple nearby genes. This article is featured in In This Issue , p.[2911][1] [1]: /lookup/volpage/196/2911
机译:全基因组关联研究发现> 60个基因座可赋予1型糖尿病(T1D)遗传易感性。其中许多仅由匿名单核苷酸多态性定义:潜在的致病基因以及它们介导易感性的分子基础尚不清楚。鉴定这些变体如何影响导致耐受性丧失的复杂机制是一个挑战。在这项研究中,我们进行了系统分析以表征这些变体。首先,针对每个基因座的已报道单核苷酸多态性,对所有处于强连锁不平衡状态(r 2> 0.8)的已知基因进行了常见的非同义变异测试。我们在16个T1D位点仅发现了22个候选基因,它们具有常见的非同义词等位基因。接下来,我们进行了功能研究,以检验非HLA T1D风险等位基因对调节四种不同细胞类型中基因表达水平的影响:EBV转化的B细胞系(静息和6 h PMA刺激)以及纯化的CD4 +和CD8 + T细胞。我们绘制了顺式作用表达定量性状基因座,发现了至少在一种细胞类型中显着影响31个转录本表达的24个非HLA基因座。此外,我们观察到25个基因座,它们反式影响38个转录本。总之,我们的系统遗传学分析定义了T1D风险等位基因对基因表达水平的影响,并为T1D的复杂遗传学提供了新颖的见解,表明大多数T1D风险等位基因通过影响多个附近基因的表达来介导其作用。本文在本期特刊,第[2911] [1]页中进行了介绍。 [1]:/ lookup / volpage / 196/2911

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