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Quantitative analysis of conditional gene inactivation using rationally designed, tetracycline-controlled miRNAs

机译:使用合理设计的四环素控制的miRNA对条件基因失活进行定量分析

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The combination of RNA interference (RNAi) with the tetracycline-controlled transcription activation (tet) system promises to become a powerful method for conditional gene inactivation in cultured cells and in whole organisms. Here, we tested critical sequence elements that originated from miRNA mR-30 for optimal efficiency of RNAi-based gene knockdown in mammalian cells. Rationally designed miRNAs, expressed conditionally via the tet system, led to an efficient knockdown of the expression of both reporter genes and the endogenous mitotic spindle protein TPX2 in HeLa cells. Quantitative studies of the tet-controlled gene inactivation revealed that the residual expression of the target gene is an intrinsic attribute of all cells that cannot be eliminated either by increasing the miRNA to target mRNA ratio or by simultaneous expression of miRNAs targeting different sequences within the transcript. The kinetic analysis of the reversibility of the miRNA mediated knockdown suggests that the recovery of target gene expression is primarily driven by cell division. Our miRNA design provides a useful tool for conditional gene inactivation in combination with the RNA-polymerase II based tet system. The identified characteristics of the conditional RNAi-mediated knockdown need to be considered for its application in cell culture or in vivo.
机译:RNA干扰(RNAi)与四环素控制的转录激活(tet)系统的结合有望成为培养细胞和整个生物体中条件基因失活的有效方法。在这里,我们测试了源自miRNA mR-30的关键序列元件对于哺乳动物细胞中基于RNAi的基因敲除的最佳效率。通过tet系统有条件表达的合理设计的miRNA,导致HeLa细胞中两个报告基因和内源有丝分裂纺锤体蛋白TPX2的表达均被有效抑制。 tet控制的基因失活的定量研究表明,靶基因的残留表达是所有细胞的固有属性,无法通过增加miRNA与靶mRNA的比例或同时表达靶向转录物中不同序列的miRNA来消除。对miRNA介导的敲低可逆性的动力学分析表明,靶基因表达的恢复主要由细胞分裂驱动。我们的miRNA设计结合基于RNA聚合酶II的tet系统,为条件基因失活提供了有用的工具。在细胞培养或体内应用中,需要考虑条件RNAi介导的敲除的鉴定特征。

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