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Competition for RISC binding predicts in vitro potency of siRNA

机译:RISC结合的竞争预测了siRNA的体外效力

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Short interfering RNAs (siRNA) guide degradation of target RNA by the RNA-induced silencing complex (RISC). The use of siRNA in animals is limited partially due to the short half-life of siRNAs in tissues. Chemically modified siRNAs are necessary that maintain mRNA degradation activity, but are more stable to nucleases. In this study, we utilized alternating 2'-O-methyl and 2'-deoxy-2'-fluoro (OMe/F) chemically modified siRNA targeting PTEN and Eg5. OMe/F-modified siRNA consistently reduced mRNA and protein levels with equal or greater potency and efficacy than unmodified siRNA. We showed that modified siRNAs use the RISC mechanism and lead to cleavage of target mRNA at the same position as unmodified siRNA. We further demonstrated that siRNAs can compete with each other, where highly potent siRNAs can compete with less potent siRNAs, thus limiting the ability of siRNAs with lower potency to mediate mRNA degradation. In contrast, a siRNA with low potency cannot compete with a highly efficient siRNA. We established a correlation between siRNA potency and ability to compete with other siRNAs. Thus, siRNAs that are more potent inhibitors for mRNA destruction have the potential to out-compete less potent siRNAs indicating that the amount of a cellular component, perhaps RISC, limits siRNA activity.
机译:短干扰RNA(siRNA)指导RNA诱导的沉默复合物(RISC)降解靶RNA。 siRNA在动物中的使用受到部分限制,因为siRNA在组织中的半衰期很短。化学修饰的siRNA必须保持mRNA降解活性,但对核酸酶更稳定。在这项研究中,我们利用交替的2'-O-甲基和2'-脱氧-2'-氟(OMe / F)化学修饰的siRNA靶向PTEN和Eg5。与未修饰的siRNA相比,OMe / F修饰的siRNA始终以相同或更高的效力和功效持续降低mRNA和蛋白质水平。我们表明,修饰的siRNA使用RISC机制,并导致与未修饰的siRNA相同位置的靶mRNA裂解。我们进一步证明了siRNA可以互相竞争,其中高效能siRNA可以与效价较低的siRNA竞争,从而限制了效能较低的siRNA介导mRNA降解的能力。相反,低效力的siRNA不能与高效siRNA竞争。我们在siRNA效能和与其他siRNA竞争的能力之间建立了相关性。因此,作为更有效的mRNA破坏抑制剂的siRNA有可能与较弱的siRNA竞争,这表明细胞成分(可能是RISC)的量限制了siRNA的活性。

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