Division of Nephrology, The University of Texas Health Science Center, San Antonio, Texas, USA.
Diabetes. 2012 Sep;61(9):2385-93. doi: 10.2337/db11-1078. Epub 2012 May 22.
The objective of this study is to identify and characterize the genetic variants related to the glomerular filtration rate (GFR) linkage on 2q37. Of the positional candidate genes, we selected IRS1 and resequenced its 2-kb promoter region and exons for sequence variants in 32 subjects. A total of 11 single nucleotide polymorphisms (SNPs) were identified. To comprehensively cover the 59-kb-long intron-1, eight additional tagging SNPs were selected from the HapMap. All the 19 SNPs were genotyped by TaqMan Assay in the entire data set (N = 670; 39 families). Association analyses between the SNPs and GFR and type 2 diabetes-related traits were performed using the measured genotype approach. Of the SNPs examined for association, only the Gly(972)Arg variant of IRS1 exhibited a significant association with GFR (P = 0.0006) and serum triglycerides levels (P = 0.003), after accounting for trait-specific covariate effects. Carriers of Arg972 had significantly decreased GFR values. Gly(972)Arg contributed to 26% of the linkage signal on 2q. Expression of IRS1 mutant Arg972 in human mesangial cells significantly reduced the insulin-stimulated phosphorylation of IRS1 and Akt kinase. Taken together, the data provide the first evidence that genetic variation in IRS1 may influence variation in GFR probably through impaired insulin receptor signaling.
本研究旨在鉴定和描述与 2q37 上肾小球滤过率(GFR)连锁相关的遗传变异。在定位候选基因中,我们选择了 IRS1,并对其 2kb 启动子区域和外显子进行了测序,以寻找 32 个个体中的序列变异。共鉴定出 11 个单核苷酸多态性(SNP)。为了全面涵盖长达 59kb 的内含子 1,我们从 HapMap 中选择了另外 8 个标记 SNP。在整个数据集(N=670;39 个家系)中,使用 TaqMan 测定法对所有 19 个 SNP 进行了基因分型。采用测量基因型方法对 SNP 与 GFR 和 2 型糖尿病相关特征之间的关联进行了分析。在所检查的与关联相关的 SNP 中,只有 IRS1 的 Gly(972)Arg 变体与 GFR(P=0.0006)和血清甘油三酯水平(P=0.003)显著相关,在考虑了特定性状的协变量效应后。Arg972 携带者的 GFR 值显著降低。Gly(972)Arg 对 2q 上的连锁信号贡献了 26%。IRS1 突变 Arg972 在人肾小球系膜细胞中的表达显著降低了胰岛素刺激的 IRS1 和 Akt 激酶磷酸化。总之,这些数据提供了第一个证据,表明 IRS1 中的遗传变异可能通过受损的胰岛素受体信号影响 GFR 的变化。