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Gene Silencing Efficiency and INF-β Induction Effects of Splicing miRNA 155-Based Artificial miRNA with Pre-miRNA Stem-Loop Structures

机译:基于miRNA 155的pre-miRNA茎环结构的miRNA剪接的基因沉默效率和INF-β诱导作用

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Artificial microRNA (miRNA) expression vectors have been developed and used for RNA interference. The secondary structure of artificial miRNA is important for RNA interference efficacy. We designed two groups of six artificial splicing miRNA 155-based miRNAs (SM155-based miRNAs) with the same target in the coding region or 3′ UTR of a target gene and studied their RNA silencing efficiency and interferon β (IFN-β) induction effects. SM155-based miRNA with a mismatch at the +1 position and a bulge at the +11, +12 positions in a miRNA precursor stem-loop structure showed the highest gene silencing efficiency and lowest IFN-β induction effect (increased IFN-β mRNA level by 10% in both target cases), regardless of the specificity of the target sequence, suggesting that pSM155-based miRNA with this design could be a valuable miRNA expression vector.
机译:已经开发了人工microRNA(miRNA)表达载体,并将其用于RNA干扰。人工miRNA的二级结构对于RNA干扰功效非常重要。我们设计了两组,每组六个人工剪接的基于miRNA 155的miRNA(基于SM155的miRNA),它们在靶基因的编码区或3'UTR中具有相同靶标,并研究了它们的RNA沉默效率和干扰素β(IFN-β)诱导效果。基于SM155的miRNA在miRNA前体茎环结构中的+1位错配且在+ 11,+ 12位凸出,显示出最高的基因沉默效率和最低的IFN-β诱导作用(增加的IFN-βmRNA不论靶序列的特异性如何,在两种靶标情况下的水平都降低了10%),这表明采用这种设计的基于pSM155的miRNA可能是有价值的miRNA表达载体。

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