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Flavivirus sfRNA suppresses antiviral RNA interference in cultured cells and mosquitoes and directly interacts with the RNAi machinery

机译:黄病毒sfRNA抑制培养细胞和蚊子中的抗病毒RNA干扰,并与RNAi机制直接相互作用

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Productive arbovirus infections require mechanisms to suppress or circumvent the cellular RNA interference (RNA pathway, a major antiviral response in mosquitoes. In this study, we demonstrate that two flaviviruses, Dengue virus and Kunjin virus, significantly repress siRNA-mediated RNAi in infected human cells as well as during infection of the mosquito vector Culex quinquefasciatus. Arthropod-borne flaviviruses generate a small structured non-coding RNA from the viral 3' UTR referred to as sfRNA. Analysis of infections with a mutant Kunjin virus that is unable to generate appreciable amounts of the major sfRNA species indicated that RNAi suppression was associated with the generation of the non-coding sfRNA. Co-immunoprecipitation of sfRNA with RNAi mediators Dicer and Ago2 suggest a model for RNAi suppression. Collectively, these data help to establish a clear role for sfRNA in RNAi suppression and adds to the emerging impact of viral long non-coding RNAs in modulating aspects of anti-viral immune processes. (C) 2015 Elsevier Inc. All rights reserved.
机译:生产性虫媒病毒感染需要抑制或规避细胞RNA干扰的机制(RNA途径,这是蚊子的主要抗病毒反应。在这项研究中,我们证明了两种黄病毒(登革热病毒和昆金病毒)可以显着抑制受感染人类细胞中siRNA介导的RNAi。以及在蚊媒库蚊(Culex quinquefasciatus)的感染过程中,节肢动物传播的黄病毒会从病毒3'UTR中生成小的结构化非编码RNA,即sfRNA。 sfRNA的主要种类表明RNAi抑制与非编码sfRNA的产生有关。sfRNA与RNAi介体Dicer和Ago2的共免疫沉淀提出了RNAi抑制的模型。 sfRNA在RNAi抑制中的作用,并增加了病毒性长非编码RNA在调节细胞凋亡方面的新兴影响病毒免疫过程。 (C)2015 Elsevier Inc.保留所有权利。

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