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Controlling activation of the RNA-dependent protein kinase by siRNAs using site-specific chemical modification

机译:使用位点特异性化学修饰控制siRNA激活RNA依赖性蛋白激酶

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The RNA-dependent protein kinase (PKR) is activated by binding to double-stranded RNA (dsRNA). Activation of PKR by short-interfering RNAs (siRNAs) and stimulation of the innate immune response has been suggested to explain certain off-target effects in some RNA interference experiments. Here we show that PKR's kinase activity is stimulated in vitro 3- to 5-fold by siRNA duplexes with 19 bp and 2 nt 3'-overhangs, whereas the maximum activation observed for poly(I)center dot poly(C) was 17-fold over background under the same conditions. Directed hydroxyl radical cleavage experiments indicated that siRNA duplexes have at least four different binding sites for PKR's dsRNA binding motifs (dsRBMs). The location of these binding sites suggested specific nucleotide positions in the siRNA sense strand that could be modified with a corresponding loss of PKR binding. Modification at these sites with N-2-benzyl-2'-deoxyguanosine (BndG) blocked interaction with PKR's dsRBMs and inhibited activation of PKR by the siRNA. Importantly, modification of an siRNA duplex that greatly reduced PKR activation did not prevent the duplex from lowering mRNA levels of a targeted message by RNA interference in HeLa cells. Thus, these studies demonstrate that specific positions in an siRNA can be rationally modified to prevent interaction with components of cellular dsRNA-regulated pathways.
机译:RNA依赖性蛋白激酶(PKR)通过与双链RNA(dsRNA)结合而被激活。有人建议通过短干扰RNA(siRNA)激活PKR和刺激先天免疫应答,以解释某些RNA干扰实验中某些脱靶效应。在这里,我们显示PKR的激酶活性在体外被19 bp和2 nt 3'突出端的siRNA双链体刺激了3到5倍,而对poly(I)中心点poly(C)观察到的最大活化是17-在相同条件下折叠在背景上。指导的羟基自由基切割实验表明,siRNA双链体具有至少四个不同的结合位点,用于PKR的dsRNA结合基序(dsRBM)。这些结合位点的位置暗示了siRNA有义链中的特定核苷酸位置,可以通过相应的PKR结合缺失来修饰它们。在这些位点上用N-2-苄基-2'-脱氧鸟苷(BndG)修饰可阻止与PKR的dsRBM相互作用,并抑制siRNA激活PKR。重要的是,大大降低PKR活化的siRNA双链体的修饰并不能阻止双链体通过HeLa细胞中的RNA干扰而降低靶向信息的mRNA水平。因此,这些研究表明,可以合理地修饰siRNA中的特定位置,以防止与细胞dsRNA调控途径的成分相互作用。

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