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Design of extended short hairpin RNAs for HIV-1 inhibition

机译:抑制HIV-1的延伸短发夹RNA的设计

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RNA interference (RNAi) targeted towards viral mRNAs is widely used to block virus replication in mammalian cells. The specific antiviral RNAi response can be induced via transfection of synthetic small interfering RNAs (siRNAs) or via intracellular expression of short hairpin RNAs (shRNAs). For HIV-1, both approaches resulted in profound inhibition of virus replication. However, the therapeutic use of a single siRNA/shRNA appears limited due to the rapid emergence of RNAi-resistant escape viruses. These variants contain deletions or point mutations within the target sequence that abolish the antiviral effect. To avoid escape from RNAi, the virus should be simultaneously targeted with multiple shRNAs. Alternatively, long hairpin RNAs can be used from which multiple effective siRNAs may be produced. In this study, we constructed extended shRNAs (e-shRNAs) that encode two effective siRNAs against conserved HIV-1 sequences. Activity assays and RNA processing analyses indicate that the positioning of the two siRNAs within the hairpin stem is critical for the generation of two functional siRNAs. E-shRNAs that are efficiently processed into two effective siRNAs showed better inhibition of virus production than the poorly processed e-shRNAs, without inducing the interferon response. These results provide building principles for the design of multi-siRNA hairpin constructs.
机译:针对病毒mRNA的RNA干扰(RNAi)被广泛用于阻止病毒在哺乳动物细胞中复制。可通过转染合成的小干扰RNA(siRNA)或通过短发夹RNA(shRNA)的细胞内表达来诱导特异性抗病毒RNAi反应。对于HIV-1,这两种方法都对病毒复制产生了深远的抑制作用。但是,由于迅速出现了RNAi抵抗逃逸病毒,单个siRNA / shRNA的治疗用途受到了限制。这些变体在靶序列内包含消除抗病毒作用的缺失或点突变。为避免从RNAi逃逸,应同时使用多个shRNA靶向该病毒。或者,可以使用长发夹RNA,可以从中产生多个有效的siRNA。在这项研究中,我们构建了扩展的shRNA(e-shRNA),其编码两种针对保守的HIV-1序列的有效siRNA。活性测定和RNA加工分析表明,两个siRNA在发夹茎中的定位对于生成两个功能性siRNA至关重要。被有效加工成两个有效siRNA的E-shRNA与加工较差的e-shRNA相比,对病毒的产生具有更好的抑制作用,而不会引起干扰素应答。这些结果为设计多siRNA发夹构建体提供了构建原则。

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