Department of Pediatrics, Copenhagen Diabetes Research Center (CPH-DIRECT), Herlev University Hospital, Herlev Ringvej 75, Herlev DK-2730, Denmark.
Faculty of Health and Medical Sciences, University of Copenhagen, Copenhagen DK-1165, Denmark.
Genes (Basel). 2015 Jul 13;6(3):577-91. doi: 10.3390/genes6030577.
Despite numerous studies implicating Alu repeat elements in various diseases, there is sparse information available with respect to the potential functional and biological roles of the repeat elements in Type 1 diabetes (T1D). Therefore, we performed a genome-wide sequence analysis of T1D candidate genes to identify embedded Alu elements within these genes. We observed significant enrichment of Alu elements within the T1D genes (p-value < 10e-16), which highlights their importance in T1D. Functional annotation of T1D genes harboring Alus revealed significant enrichment for immune-mediated processes (p-value < 10e-6). We also identified eight T1D genes harboring inverted Alus (IRAlus) within their 3' untranslated regions (UTRs) that are known to regulate the expression of host mRNAs by generating double stranded RNA duplexes. Our in silico analysis predicted the formation of duplex structures by IRAlus within the 3'UTRs of T1D genes. We propose that IRAlus might be involved in regulating the expression levels of the host T1D genes.
尽管有大量研究表明 Alu 重复元件与各种疾病有关,但关于重复元件在 1 型糖尿病 (T1D) 中的潜在功能和生物学作用的信息却很少。因此,我们对 T1D 候选基因进行了全基因组序列分析,以鉴定这些基因中的嵌入式 Alu 元件。我们观察到 T1D 基因中 Alu 元件的显著富集(p 值 < 10e-16),这突出了它们在 T1D 中的重要性。对携带 Alu 的 T1D 基因进行功能注释,发现免疫介导过程显著富集(p 值 < 10e-6)。我们还在 8 个 T1D 基因的 3'非翻译区 (UTR) 中发现了倒置 Alu (IRAlu),它们通过生成双链 RNA 双链来调节宿主 mRNA 的表达。我们的计算机分析预测了 T1D 基因 3'UTR 内的 IRAlu 形成双链结构。我们提出,IRAlu 可能参与调节宿主 T1D 基因的表达水平。