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Forward and robust selection of the most potent and noncellular toxic siRNAs from RNAi libraries

机译:从RNAi文库中向前和强大地选择最有效和无细胞毒性的siRNA

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摘要

Use of highly potent small interfering RNAs (siRNAs) can substantially reduce dose-dependent cytotoxic and off-target effects. We developed a genetic forward approach by fusing the cytosine deaminase gene with targets for the robust identification of highly potent siRNAs from RNA interference (RNAi) libraries that were directly delivered into cells via bacterial invasion. We demonstrated that two simple drug selection cycles performed conveniently in a single container predominately enriched two siRNAs targeting the MVP gene (siMVP) and one siRNA targeting the egfp gene (siEGFP) in surviving cells and these proved to be the most effective siRNAs reported. Furthermore, the potent siRNAs isolated from the surviving cells possessed noncellular toxic characteristics. Interestingly, the length of highly potent siMVPs identified could be as short as 16-mer, and increasing the length of their native sequences dramatically reduced RNAi potency. These results suggest that the current approach can robustly discover the most potent and nontoxic siRNAs in the surviving cells, and thus has great potential in facilitating RNAi applications by minimizing the dose-dependent and sequence nonspecific side effects of siRNAs.
机译:使用高效的小干扰RNA(siRNA)可以大大降低剂量依赖性细胞毒性和脱靶效应。我们通过将胞嘧啶脱氨酶基因与靶标融合,从而从RNA干扰(RNAi)库中稳健地鉴定高效siRNA(通过细菌入侵直接传递到细胞中),从而开发了一种遗传前向方法。我们证明了在一个容器中方便地进行的两个简单药物选择周期,在存活的细胞中主要富集了两个靶向MVP基因的siRNA(siMVP)和一个靶向egfp基因的siRNA(siEGFP),这些被证明是最有效的siRNA。此外,从存活细胞中分离出的有效siRNA具有非细胞毒性特征。有趣的是,鉴定出的高效siMVP的长度可能短至16-mer,而增加其天然序列的长度会大大降低RNAi的效力。这些结果表明,当前的方法可以在存活的细胞中强有力地发现最有效和最无毒的siRNA,因此通过最小化siRNA的剂量依赖性和序列非特异性副作用,在促进RNAi应用方面具有巨大潜力。

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