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首页> 外文期刊>Antiviral Research >2-5A-DNA conjugate inhibition of respiratory syncytial virus replication: effects of oligonucleotide structure modifications and RNA target site selection.
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2-5A-DNA conjugate inhibition of respiratory syncytial virus replication: effects of oligonucleotide structure modifications and RNA target site selection.

机译:2-5A-DNA共轭物抑制呼吸道合胞病毒复制:寡核苷酸结构修饰和RNA靶位点选择的影响。

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摘要

To define more fully the conditions for 2-5A-antisense inhibition of respiratory syncytial virus (RSV), relationships between 2-5A antisense oligonucleotide structure and the choice of RNA target sites to inhibition of RSV replication have been explored. The lead 2-5A-antisense chimera for this study was the previously reported NIH8281 that targets the RSV M2 RNA. We have confirmed and extended the earlier study by showing that NIH8281 inhibited RSV strain A2 replication in a variety of antiviral assays, including virus yield reduction assays performed in monkey (EC90 = 0.02 microM) and human cells (EC90 = microM). This 2-5A-antisense chimera also inhibited other A strains, B strains and bovine RSV in cytopathic effect inhibition and Neutral Red Assays (EC50 values = 0.1-1.6 microM). The 2'-O-methylation modification of NIH8281 to increase affinity for the complementary RNA and provide nuclease resistance, the introduction of phosphothioate groups in the antisense backbone to enhance resistance to exo- and endonucleases, and the addition of cholesterol to the 3'-terminus of the antisense oligonucleotide to increase cellular uptake, all resulted in loss of activity. Of the antisense chimeras targeting other RSV mRNAs (NS1, NS2, P, M. G, F, and L), only those complementary to L mRNA were inhibitory. These results suggest that lower abundance mRNAs may be the best targets for 2-5A-antisense; moreover, the active 2-5A antisense chimeras in this study may serve as useful guides for the development of compounds with improved stability, uptake and anti-RSV activity.
机译:为了更全面地定义2-5A反义抑制呼吸道合胞病毒(RSV)的条件,已经探索了2-5A反义寡核苷酸结构与RNA靶位点选择之间的关系以抑制RSV复制。这项研究的主要2-5A反义嵌合体是先前报道的针对RSV M2 RNA的NIH8281。我们通过显示NIH8281在多种抗病毒测定中抑制RSV株A2复制来证实并扩展了先前的研究,包括在猴子(EC90 = 0.02 microM)和人细胞(EC90 = microM)中进行的病毒减量测定。这种2-5A反义嵌合体还可以抑制其他A株,B株和牛RSV的细胞病变效应抑制和中性红试验(EC50值= 0.1-1.6 microM)。 NIH8281的2'-O-甲基化修饰可增加对互补RNA的亲和力并提供核​​酸酶抗性,在反义主链中引入硫代磷酸酯基团可增强对外切核酸酶和内切核酸酶的抗性,以及将胆固醇添加到3'-用于增加细胞摄取的反义寡核苷酸的末端均导致活性丧失。在靶向其他RSV mRNA(NS1,NS2,P,M,G,F和L)的反义嵌合体中,只有与L mRNA互补的那些才具有抑制作用。这些结果表明,较低的丰度mRNAs可能是2-5A反义的最佳靶标。此外,本研究中的活性2-5A反义嵌合体可作为开发具有改善的稳定性,摄取和抗RSV活性的化合物的有用指南。

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