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5′-Triphosphate-RNA-independent activation of RIG-I via RNA aptamer with enhanced antiviral activity

机译:通过具有增强的抗病毒活性的RNA适体对RIG-I进行5'-三磷酸-RNA依赖性激活

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RIG-I is a cytosolic receptor for non-self RNA that mediates immune responses against viral infections through IFNα/β production. In an attempt to identify novel tools that modulate IFNα/β production, we used SELEX technology to screen RNA aptamers that specifically target RIG-I protein. Most of the selected RIG-I aptamers contained polyU motifs in the second half regions that played critical roles in the activation of RIG-I-mediated IFNβ production. Unlike other known ligands, RIG-I aptamer bound and activated RIG-I in a 5′-triphosphate-independent manner. The helicase and RD domain of RIG-I were used for aptamer binding, but intact RIG-I protein was required to exert aptamer-mediated signaling activation. Furthermore, replication of NDV, VSV and influenza virus in infected host cells was efficiently blocked by pre- or post-treatment with RIG-I aptamer. Based on these data, we propose that RIG-I aptamer has strong potential to be an antiviral agent that specifically boosts the RIG-I-dependent signaling cascade.
机译:RIG-I是非自身RNA的胞质受体,可通过IFNα/β产生介导针对病毒感染的免疫反应。为了确定可调节IFNα/β产生的新型工具,我们使用SELEX技术筛选了特异性针对RIG-1蛋白的RNA适体。大部分选定的RIG-I适配子在后半部分包含polyU基序,在RIG-I介导的IFNβ产生的激活中起关键作用。与其他已知的配体不同,RIG-1适体以不依赖5'-三磷酸的方式结合并激活RIG-1。 RIG-I的解旋酶和RD结构域用于结合适体,但是完整的RIG-I蛋白需要发挥适体介导的信号激活作用。此外,通过用RIG-1适体进行的预处理或后处理可以有效地阻断NDV,VSV和流感病毒在感染宿主细胞中的复制。根据这些数据,我们认为RIG-I适体具有成为抗病毒药物的强大潜力,可以特异性地增强RIG-I依赖性信号传导级联。

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