BHF Centre for Cardiovascular Genetics, Department of Medicine, University College London, London, United Kingdom.
Nutr Metab Cardiovasc Dis. 2013 Jun;23(6):550-6. doi: 10.1016/j.numecd.2011.12.012. Epub 2012 Mar 7.
Common non-coding variations within the TCF7L2 locus have a strong influence on type 2 diabetes (T2D) susceptibility through uncharacterised mechanisms. An islet-specific functional polymorphism has been identified, although this does not explain the association between genotype and gene expression in other cell types. This study sought to identify these other functional TCF7L2 variants.
Alternative splicing and gene expression from TCF7L2 was examined from peripheral blood mononuclear cells from 100 healthy Caucasians using two T2D-associated SNPs, rs7903146 and rs12255372. Electrophoretic mobility shift assays and luciferase reporter assays were performed with these SNPs and those in strong LD to determine potential SNP functionality. Individuals homozygous for rs7903146 and rs12255372 T2D risk alleles (TT/TT) expressed 2.6-fold greater levels of TCF7L2 mRNA compared to individuals homozygous for the non-risk alleles (CC/GG, p = 0.006), although differentially spliced TCF7L2 transcripts did not differ by T2D risk-associated genotype. From SNPs identified to be in strong LD with the T2D-associated SNPs, rs7903146 and rs12255372, five (rs4132670, rs4506565, rs7903146, rs7901695, rs17747324) demonstrated allele-specific binding in electrophoretic mobility shift assays (EMSA). In luciferase reporter assays, rs4132670 exhibited 1.3-fold higher levels of enhancer activity in the Huh7 cell line (p = 3.8 × 10(-5)) and 2-fold higher levels in a WiDr colon carcinoma cell line (p = 0.008).
These results suggest that rs4132670, located in a region of chromatin accessibility, is a non-tissue-specific candidate functional SNP that has the potential to play a role in TCF7L2 gene expression and T2D risk.
TCF7L2 基因座内常见的非编码变异通过未阐明的机制对 2 型糖尿病(T2D)易感性有很强的影响。已经确定了一种胰岛特异性功能多态性,尽管这并不能解释基因型与其他细胞类型中基因表达之间的关联。本研究旨在鉴定这些其他功能 TCF7L2 变体。
使用两个与 T2D 相关的 SNP(rs7903146 和 rs12255372),从 100 名健康白种人的外周血单核细胞中检查 TCF7L2 的选择性剪接和基因表达。进行电泳迁移率变动分析和荧光素酶报告基因分析,以确定这些 SNP 以及与强连锁的那些 SNP 的潜在 SNP 功能。与 rs7903146 和 rs12255372 T2D 风险等位基因(TT/TT)纯合的个体与非风险等位基因(CC/GG)纯合的个体相比,TCF7L2 mRNA 的表达水平高 2.6 倍(p = 0.006),尽管 T2D 风险相关基因型的差异剪接 TCF7L2 转录本没有差异。从与 T2D 相关 SNP(rs7903146 和 rs12255372)强连锁鉴定的 SNP 中,rs4132670、rs4506565、rs7903146、rs7901695 和 rs17747324 五个 SNP 表现出电泳迁移率变动分析(EMSA)中的等位基因特异性结合。在荧光素酶报告基因分析中,rs4132670 在 Huh7 细胞系中表现出 1.3 倍更高的增强子活性(p = 3.8 × 10(-5)),在 WiDr 结肠癌细胞系中表现出 2 倍更高的活性(p = 0.008)。
这些结果表明,位于染色质可及性区域的 rs4132670 是一个非组织特异性候选功能 SNP,它有可能在 TCF7L2 基因表达和 T2D 风险中发挥作用。