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An efficient method to enhance gene silencing by using precursor microRNA designed small hairpin RNAs

机译:通过使用前体microRNA设计的小发夹RNA增强基因沉默的有效方法

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Gene silencing can be mediated by small interfering RNA (siRNA) and microRNA (miRNA). To investigate the potential application of using a precursor microRNA (pre-miRNA) backbone for gene silencing, we studied the inhibition efficiency of exogenous GFP and endogenous GAPDH by conventional shRNA- and pre-miRNA-designed hairpins, respectively. In this study, the conventional shRNA-, pre-miRNA-30-, and pre-miRNA-155-designed hairpins targeting either GFP or GAPDH were transfected into the HEK293 cells that were mediated by the pSilencer-4.1-neo vector, which carries a modified RNA polymerase II-type CMV promoter. Comparisons with conventional GFP shRNA showed that GFP levels were reduced markedly by pre-miRNA-30- and pre-miRNA-155-designed GFP shRNAs by fluorescence microscopy. The consistent results from semi-quantitative RT-PCR and Western blot analysis revealed that pre-miRNA-30- and pre-miRNA-155-designed GFP shRNAs could suppress GFP expression significantly. As for endogenous GAPDH, the results from semi-quantitative RT-PCR and Western blot analysis showed that pre-miRNA-30- and pre-miRNA-155-designed GAPDH shRNAs could suppress GAPDH expression even more efficiently than conventional GAPDH shRNA. Together, this study confirmed the efficiency of gene silencing mediated by pre-miRNA-30- and pre-miRNA-155-designed shRNAs, demonstrating that pre-miRNA-designed hairpins are a good strategy for gene silencing.
机译:基因沉默可以通过小干扰RNA(siRNA)和微小RNA(miRNA)介导。为了研究使用前体microRNA(pre-miRNA)骨架进行基因沉默的潜在应用,我们分别研究了常规shRNA和前miRNA设计的发夹对外源GFP和内源GAPDH的抑制作用。在这项研究中,将针对GFP或GAPDH的常规shRNA,pre-miRNA-30-和pre-miRNA-155设计的发夹转染到由pSilencer-4.1-neo载体介导的HEK293细胞中。修饰的RNA聚合酶II型CMV启动子。与常规GFP shRNA的比较显示,通过荧光显微镜检查,pre-miRNA-30和pre-miRNA-155设计的GFP shRNA显着降低了GFP水平。半定量RT-PCR和蛋白质印迹分析的一致结果表明,pre-miRNA-30和pre-miRNA-155设计的GFP shRNA可以显着抑制GFP表达。至于内源性GAPDH,半定量RT-PCR和Western印迹分析的结果表明,前miRNA-30和pre-miRNA-155设计的GAPDH shRNA可以比传统GAPDH shRNA更有效地抑制GAPDH表达。总之,这项研究证实了由pre-miRNA-30和pre-miRNA-155设计的shRNA介导的基因沉默的效率,证明了由mimi设计的发夹是基因沉默的好策略。

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