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Tiling genomes of pathogenic viruses identifies potent antiviral shRNAs and reveals a role for secondary structure in shRNA efficacy

机译:病原病毒的基因组图谱可鉴定有效的抗病毒shRNA并揭示二级结构在shRNA功效中的作用

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摘要

shRNAs can trigger effective silencing of gene expression in mammalian cells, thereby providing powerful tools for genetic studies, as well as potential therapeutic strategies. Specific shRNAs can interfere with the replication of pathogenic viruses and are currently being tested as antiviral therapies in clinical trials. However, this effort is hindered by our inability to systematically and accurately identify potent shRNAs for viral genomes. Here we apply a recently developed highly parallel sensor assay to identify potent shRNAs for HIV, hepatitis C virus (HCV), and influenza. We observe known and previously unknown sequence features that dictate shRNAs efficiency. Validation using HIV and HCV cell culture models demonstrates very high potency of the top-scoring shRNAs. Comparing our data with the secondary structure of HIV shows that shRNA efficacy is strongly affected by the secondary structure at the target RNA site. Artificially introducing secondary structure to the target site markedly reduces shRNA silencing. In addition, we observe that HCV has distinct sequence features that bias HCV-targeting shRNAs toward lower efficacy. Our results facilitate further development of shRNA based antiviral therapies and improve our understanding and ability to predict efficient shRNAs.
机译:shRNA可以触发哺乳动物细胞中基因表达的有效沉默,从而为遗传研究和潜在的治疗策略提供强大的工具。特异的shRNA可能会干扰致病性病毒的复制,目前正在临床试验中将其作为抗病毒疗法进行测试。但是,由于我们无法系统,准确地识别病毒基因组的有效shRNA,因此阻碍了这项工作。在这里,我们应用了最近开发的高度并行的传感器测定法,以鉴定针对HIV,丙型肝炎病毒(HCV)和流感的有效shRNA。我们观察到已知和先前未知的序列特征,这些特征决定了shRNA的效率。使用HIV和HCV细胞培养模型进行的验证表明,得分最高的shRNA的效能非常高。将我们的数据与HIV的二级结构进行比较表明,shRNA的功效受靶RNA位点二级结构的强烈影响。人工将二级结构引入靶位点可显着降低shRNA沉默。此外,我们观察到HCV具有明显的序列特征,使靶向HCV的shRNA偏向更低的功效。我们的结果促进了基于shRNA的抗病毒疗法的进一步发展,并提高了我们对有效shRNA的理解和预测能力。

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