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RNA-mediated interference and reverse transcription control the persistence of RNA viruses in the insect model Drosophila

机译:RNA介导的干扰和反转录控制果蝇昆虫模型中RNA病毒的持久性

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摘要

How persistent viral infections are established and maintained is widely debated and remains poorly understood. We found here that the persistence of RNA viruses in Drosophila melanogaster was achieved through the combined action of cellular reverse-transcriptase activity and the RNA-mediated interference (RNAi) pathway. Fragments of diverse RNA viruses were reverse-transcribed early during infection, which resulted in DNA forms embedded in retrotransposon sequences. Those virus-retrotransposon DNA chimeras produced transcripts processed by the RNAi machinery, which in turn inhibited viral replication. Conversely, inhibition of reverse transcription hindered the appearance of chimeric DNA and prevented persistence. Our results identify a cooperative function for retrotransposons and antiviral RNAi in the control of lethal acute infection for the establishment of viral persistence. ? 2013 Nature America, Inc. All rights reserved.
机译:如何建立和维持持续性病毒感染已引起广泛争议,并且仍然知之甚少。我们在这里发现果蝇果蝇中RNA病毒的持久性是通过细胞逆转录酶活性和RNA介导的干扰(RNAi)途径的联合作用实现的。感染期间早期,多种RNA病毒的片段被逆转录,导致DNA形式嵌入逆转录转座子序列中。这些病毒逆转录转座子DNA嵌合体产生由RNAi机制加工的转录本,进而抑制了病毒复制。相反,抑制逆转录会阻碍嵌合DNA的出现并阻止持久性。我们的结果确定了反转录转座子和抗病毒RNAi在控制致命急性感染以建立病毒持久性方面的协同功能。 ? 2013 Nature America,Inc.保留所有权利。

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