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Control of small inhibitory RNA levels and RNA interference by doxycycline induced activation of a minimal RNA polymerase III promoter

机译:多西环素诱导的最小抑制性RNA水平和RNA干扰的控制引起最小RNA聚合酶III启动子的激活

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RNA interference (RNAi) mediated by expression of short hairpin RNAs (shRNAs) is a powerful tool for efficiently suppressing target genes. The approach allows studies of the function of individual genes and may also be applied to human therapy. However, in many instances regulation of RNAi by administration of a small inducer molecule will be required. To date, the development of appropriate regulatory systems has been hampered by the few possibilities for modification within RNA polymerase III promoters capable of driving efficient expression of shRNAs. We have developed an inducible minimal RNA polymerase III promoter that is activated by a novel recombinant transactivator in the presence of doxycycline (Dox). The recombinant transactivator and the engineered promoter together form a system permitting regulation of RNAi by Dox-induced expression of shRNAs. Regulated RNAi was mediated by one single lentiviral vector, blocked the expression of green fluorescent protein (GFP) in a GFP-expressing HEK 293T derived cell line and suppressed endogenous p53 in wild-type HEK 293T, MCF-7 and A549 cells. RNA interference was induced in a dose- and time-dependent manner by administration of Dox, silenced the expression of both target genes by 90% and was in particular reversible after withdrawal of Dox.
机译:短发夹RNA(shRNA)的表达介导的RNA干扰(RNAi)是有效抑制靶基因的强大工具。该方法可以研究单个基因的功能,也可以应用于人类治疗。然而,在许多情况下,将需要通过施用小的诱导剂分子来调节RNAi。迄今为止,由于能够驱动shRNA有效表达的RNA聚合酶III启动子内修饰的可能性很小,阻碍了适当调控系统的开发。我们已经开发了一种诱导型最小RNA聚合酶III启动子,该启动子在强力霉素(Dox)存在的情况下被新型重组反式激活子激活。重组反式激活因子和工程启动子共同形成一个系统,该系统允许通过Dox诱导的shRNA表达调节RNAi。调控的RNAi由一个单一的慢病毒载体介导,阻断了表达GFP的HEK 293T衍生细胞系中绿色荧光蛋白(GFP)的表达,并抑制了野生型HEK 293T,MCF-7和A549细胞中的内源性p53。通过施用Dox以剂量和时间依赖性的方式诱导RNA干扰,使两个靶基因的表达沉默90%,尤其是撤回Dox后可逆。

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