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Potent inhibition of influenza virus replication with novel siRNA-chimeric-ribozyme constructs.

机译:使用新型siRNA-嵌合-核酶构建体可有效抑制流感病毒复制。

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A multitarget approach is needed for effective gene silencing for RNA viruses that combines, more than one antiviral approach. Towards this end, we designed a wild-type (wt) chimeric construct, that consisted of small hairpin siRNA joined by a short intracellular cleavable linker to a known, hammerhead ribozyme (Rz), both targeted against M1 genome segment of influenza A virus. When this, wt chimeric RNA construct was introduced into a mammalian cell line, along with the M1 substrate, encoding DNA, very significant (67%) intracellular down regulation in the levels of target RNA was, observed. When the siRNA portion of this chimeric construct was mutated keeping the Rz region, unchanged, it caused only 33% intracellular reduction. On the contrary, when only the Rz was made, catalytically inactive, keeping the siRNA component unchanged, about 20% reduction in the target M1, specific RNA was observed. This wt chimeric construct showed impressive (>80%) protection against, virus challenge, on the other hand, the selectively disabled mutant constructs were less effective. Thus, in this proof of concept study we show that varying levels of protection against virus challenge was, observed with novel mutant versions of the chimeric constructs.
机译:需要一种有效结合多于一种抗病毒方法的RNA病毒有效基因沉默的多靶点方法。为此,我们设计了一种野生型(wt)嵌合构建体,该构建体由小发夹siRNA和一个短的细胞内可裂解接头连接到已知的锤头状核酶(Rz)组成,二者均针对A型流感病毒的M1基因组片段。当这种wt嵌合RNA构建体与编码DNA的M1底物一起被引入哺乳动物细胞系时,观察到靶RNA水平非常显着(67%)的细胞内下调。当该嵌合构建体的siRNA部分发生突变,保持Rz区不变时,仅引起33%的细胞内减少。相反,当仅制备Rz时,无催化活性,使siRNA组分保持不变,目标M1降低约20%,观察到特异性RNA。这种wt嵌合构建体显示出令人印象深刻的(> 80%)抵抗病毒攻击的保护作用,另一方面,选择性失活的突变体构建体效果较差。因此,在该概念验证研究中,我们表明,使用嵌合构建体的新型突变形式观察到了不同水平的针对病毒攻击的保护。

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