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Novel Expression Vectors Enabling Induction of Gene Expression by Small-Interfering RNAs and MicroRNAs

机译:新型表达载体可通过小干扰RNA和微小RNA诱导基因表达。

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摘要

Small-interfering RNAs and microRNAs are small ∼21–22 nucleotide long RNAs capable of posttranscriptional suppression of gene expression. The synthetic siRNAs are especially designed to target pre-specified genes and are common molecular biology tools. The miRNAs are endogenous regulators of gene expression found in a wide variety of eukaryotes. miRNAs are currently utilized for diagnostics applications. Therapeutically, various miRNA-antagonizing tools are being explored and miRNAs are also utilized for cell-specific inhibition of the expression of gene therapy vectors harboring target sites for specific miRNAs. Here we show, for the first time, that siRNAs and miRNAs can be harnessed to induce gene expression. We designed special expression vectors in which target sites for artificial siRNAs or endogenous miRNAs are located between the transgene and an Upstream Inhibitory Region (UIR). We hypothesized that cleavage of the mRNA by siRNAs or miRNAs will separate the transgene from the UIR and the resulting uncapped mRNA will be capable of being translated. A UIR composed of seven open reading frames was found to be the most efficient inhibitor of the translation of the downstream transgene. We show that under such a configuration both artificial siRNAs and endogenous miRNAs were capable of inducing transgene expression. We show that using the diphtheria toxin A-chain gene, in combination with target sites for highly expressed miRNAs, specific induction of cell-death can be achieved, setting the stage for application to cancer therapy.
机译:小干扰RNA和microRNA是约21-22个核苷酸长的RNA,能够转录后抑制基因表达。合成的siRNA专门针对预先指定的基因而设计,是常见的分子生物学工具。 miRNA是在各种真核生物中发现的基因表达的内源调节因子。 miRNA目前用于诊断应用。在治疗上,正在探索各种miRNA拮抗工具,并且miRNA也用于细胞特异性抑制基因治疗载体的表达,该基因治疗载体带有特定miRNA的靶位点。在这里,我们首次展示了可以利用siRNA和miRNA诱导基因表达。我们设计了特殊的表达载体,其中人工siRNA或内源性miRNA的目标位点位于转基因和上游抑制区(UIR)之间。我们假设siRNA或miRNA对mRNA的切割将使转基因与UIR分离,并且产生的未封端的mRNA将能够被翻译。发现由七个开放阅读框组成的UIR是下游转基因翻译的最有效抑制剂。我们表明,在这种配置下,人工siRNA和内源性miRNA都能够诱导转基因表达。我们显示,使用白喉毒素A链基因,结合高表达miRNA的靶位点,可以实现细胞死亡的特异性诱导,为癌症治疗应用奠定了基础。

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