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Induction of RNAi Responses by Short Left-Handed Hairpin RNAi Triggers

机译:左手短发夹RNAi触发器诱导RNAi反应。

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摘要

Small double-stranded, left-handed hairpin (LHP) RNAs containing a 5′-guide-loop-passenger-3′ structure induce RNAi responses by a poorly understood mechanism. To explore LHPs, we synthesized fully 2′-modified LHP RNAs targeting multiple genes and found all to induce robust RNAi responses. Deletion of the loop and nucleotides at the 5′-end of the equivalent passenger strand resulted in a smaller LHP that still induced strong RNAi responses. Surprisingly, progressive deletion of up to 10 nucleotides from the 3′-end of the guide strand resulted in a 32mer LHP capable of inducing robust RNAi responses. However, further guide strand deletion inhibited LHP activity, thereby defining the minimal length guide targeting length to 13 nucleotides. To dissect LHP processing, we examined LHP species that coimmunoprecipitated with Argonaute 2 (Ago2), the catalytic core of RNA-induced silencing complex, and found that the Ago2-associated processed LHP species was of a length that correlated with Ago2 cleavage of the passenger strand. Placement of a blocking 2′-OMe blocking modification at the LHP predicted Ago2 cleavage site resulted in an intact LHP loaded into Ago2 and no RNAi response. Taken together, these data argue that in the absence of a substantial loop, this novel class of small LHP RNAs enters the RNAi pathway by a Dicer-independent mechanism that involves Ago2 cleavage and results in an extended guide strand. This work establishes LHPs as an alternative RNAi trigger that can be produced from a single synthesis for potential use as an RNAi therapeutic.
机译:包含5'-引导环-passenger-3'结构的小双链左手发夹(LHP)RNA通过不甚了解的机制诱导RNAi反应。为了探索LHP,我们合成了针对多个基因的完全2'-修饰的LHP RNA,并发现它们均能诱导强大的RNAi反应。删除等效乘客链5'末端的环和核苷酸会产生较小的LHP,该LHP仍能诱导强烈的RNAi反应。出人意料的是,从引导链的3'末端逐渐缺失多达10个核苷酸导致了32聚体LHP,能够诱导强大的RNAi应答。然而,进一步的引导链缺失抑制了LHP活性,从而限定了将长度靶向至13个核苷酸的最小长度。为了剖析LHP加工过程,我们检查了与Argonaute 2(Ago2)(RNA诱导的沉默复合体的催化核心)共免疫沉淀的LHP物种,发现与Ago2相关的加工过的LHP物种的长度与乘客的Ago2裂解相关。股。在LHP预测的Ago2切割位点放置2'-OMe封闭修饰位点会导致完整的LHP载入Ago2,并且没有RNAi反应。综上所述,这些数据表明,在没有实质性环的情况下,这类新型的小LHP RNA通过涉及Ago2裂解的Dicer独立机制进入RNAi途径,并导致延伸的引导链。这项工作确立了LHPs作为一种替代RNAi触发因子,它可以从单一合成中产生,从而有可能用作RNAi治疗剂。

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