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A large-scale chemical modification screen identifies design rules to generate siRNAs with high activity, high stability and low toxicity

机译:大规模化学修饰屏幕可确定设计规则,以生成具有高活性,高稳定性和低毒性的siRNA

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The use of chemically synthesized short interfering RNAs (siRNAs) is currently the method of choice to manipulate gene expression in mammalian cell culture, yet improvements of siRNA design is expectably required for successful application in vivo. Several studies have aimed at improving siRNA performance through the introduction of chemical modifications but a direct comparison of these results is difficult. We have directly compared the effect of 21 types of chemical modifications on siRNA activity and toxicity in a total of 2160 siRNA duplexes. We demonstrate that siRNA activity is primarily enhanced by favouring the incorporation of the intended antisense strand during RNA-induced silencing complex (RISC) loading by modulation of siRNA thermodynamic asymmetry and engineering of siRNA 3'-overhangs. Collectively, our results provide unique insights into the tolerance for chemical modifications and provide a simple guide to successful chemical modification of siRNAs with improved activity, stability and low toxicity.
机译:目前,化学合成的短干扰RNA(siRNA)的使用是在哺乳动物细胞培养中操纵基因表达的首选方法,但是成功地在体内应用仍需要对siRNA设计进行改进。多项研究旨在通过引入化学修饰来改善siRNA的性能,但很难直接比较这些结果。我们直接比较了总共2160个siRNA双链体中21种化学修饰类型对siRNA活性和毒性的影响。我们证明,siRNA活性主要是通过调节siRNA热力学不对称性和siRNA 3'-突出端的工程来促进RNA诱导的沉默复合物(RISC)加载过程中预期反义链的掺入而增强。总的来说,我们的结果为化学修饰的耐受性提供了独特的见解,并为成功进行具有改进的活性,稳定性和低毒性的siRNA的化学修饰提供了简单的指南。

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