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A more efficient RNAi inducible system for tight regulation of gene expression in mammalian cells and xenograft animals

机译:用于哺乳动物细胞和异种移植动物中基因表达的严格调控的更有效的RNAi诱导系统

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Two types of tetracycline-controlled inducible RNAi expression systems have been developed that generally utilize multiple tetracycline operators (TetOs) or repressor fusion proteins to overcome the siRNA leakiness. Here, we report a novel system that overexpresses the tetracycline repressor (TetR) via a bicistronic construct to control siRNA expression. The high level of TetR expression ensures that the inducible promoter is tightly bound, with minimal basal transcription, allowing for regulation solely dependent on TetR rather than a TetR fusion protein via a more complicated mechanism. At the same time, this system contains only a single TetO, thus minimizing the promoter impairment occurring in existing systems due to the incorporation of multiple TetOs, and maximizing the siRNA expression upon induction. In addition, this system combines all the components required for regulation of siRNA expression into a single lentiviral vector, so that stable cell lines can be generated by a single transduction and selection, with significant reduction in time and cost. Taken together, this all-in-one lentiviral vector with the feature of TetR overexpression provides a unique and more efficient tool for conditional gene knockdown that has wide applications. We have demonstrated the high degree of robustness and versatility of this system as applied to several mammalian cells and xenograft animals.
机译:已经开发了两种类型的四环素控制的诱导型RNAi表达系统,这些系统通常利用多个四环素操纵子(TetOs)或阻遏物融合蛋白来克服siRNA泄漏。在这里,我们报告了一种新型的系统,该系统通过双顺反子构建体来过表达四环素阻遏物(TetR),以控制siRNA的表达。高水平的TetR表达确保可诱导的启动子紧密结合,基础转录最少,从而允许通过更复杂的机制仅依赖TetR而不是TetR融合蛋白进行调节。同时,该系统仅包含单个TetO,从而将由于引入多个TetO而在现有系统中发生的启动子损伤降至最低,并使诱导后的siRNA表达最大化。此外,该系统将调节siRNA表达所需的所有组件组合到单个慢病毒载体中,从而可以通过一次转导和选择即可生成稳定的细胞系,从而显着减少了时间和成本。总而言之,这种具有TetR过表达功能的多合一慢病毒载体为条件基因敲除提供了独特且更有效的工具,其应用广泛。我们已经证明了该系统在应用于多种哺乳动物细胞和异种移植动物时具有高度的鲁棒性和多功能性。

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