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MicroRNA-mediated regulation of gene expression is affected by disease-associated SNPs within the 3′-UTR via altered RNA structure

机译:MicroRNA介导的基因表达调控受3'-UTR中与疾病相关的SNP的影响,通过改变RNA结构

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Single nucleotide polymorphisms (SNPs) in microRNAs (miRNAs) or their target sites (miR-SNPs) within the 3′-UTR of mRNAs are increasingly thought to play a major role in pathological dysregulation of gene expression. Here, we studied the functional role of miR-SNPs on miRNA-mediated post-transcriptional regulation of gene expression. First, analyses were performed on a SNP located in the miR-155 target site within the 3′-UTR of the Angiotensin II type 1 receptor (AGTR1; rs5186, A > C) mRNA. second, a SNP in the 3′-UTR of the muscle RAs oncogene homolog (MRAS; rs9818870, c > T) mRNA was studied which is located outside of binding sites of miR-195 and miR-135. Using these SNPs we investigated their effects on local RNA structure, on local structural accessibility and on functional miRNA binding, respectively. Systematic computational RNA folding analyses of the allelic mRNAs in either case predicted significant changes of local RNA structure in the vicinity of the cognate miRNA binding sites. Consistently, experimental in vitro probing of RNA showing differential cleavage patterns and reporter gene-based assays indicated functional differences of miRNA-mediated regulation of the two AGTR1 and MRAS alleles. In conclusion, we describe a novel model explaining the functional influence of 3′-UTR-located SNPs on miRNA-mediated control of gene expression via SNP-related changes of local RNA structure in non-coding regions of mRNA. This concept substantially extends the meaning of disease-related SNPs identified in non protein-coding transcribed sequences within or close to miRNA binding sites.
机译:越来越多地认为,mRNA的3'-UTR内的microRNA(miRNA)或它们的靶位点(miR-SNPs)中的单核苷酸多态性(SNP)在基因表达的病理失调中起主要作用。在这里,我们研究了miR-SNP在miRNA介导的基因表达转录后调控中的功能。首先,对位于血管紧张素II 1型受体(AGTR1; rs5186,A> C)mRNA 3'-UTR内miR-155靶位点的SNP进行分析。其次,研究了肌肉RAs癌基因同源物(MRAS; rs9818870,c> T)mRNA的3'-UTR中的SNP,其位于miR-195和miR-135的结合位点之外。使用这些SNP,我们分别研究了它们对局部RNA结构,局部结构可及性和功能性miRNA结合的影响。在两种情况下,对等位基因mRNA的系统计算RNA折叠分析都预测了同源miRNA结合位点附近局部RNA结构的显着变化。一致地,RNA的实验性体外探测显示出不同的裂解模式和基于报告基因的分析表明,miRNA介导的两个AGTR1和MRAS等位基因调控的功能差异。总之,我们描述了一种新型模型,该模型解释了3'-UTR定位的SNPs通过miRNA非编码区中本地RNA结构的SNP相关变化对miRNA介导的基因表达控制的功能影响。该概念实质上扩展了在miRNA结合位点内或附近的非蛋白质转录序列中鉴定的疾病相关SNP的含义。

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