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Dicer-2-Dependent Generation of Viral DNA from Defective Genomes of RNA Viruses Modulates Antiviral Immunity in Insects. | LitMetric

AI Article Synopsis

  • The RNAi pathway in insects provides antiviral immunity through the production of virus-specific siRNAs, which are amplified via reverse transcription of viral RNA into viral DNA (vDNA).
  • Our research shows that vDNA exists in both linear and circular forms, with circular vDNA (cvDNA) being effective in generating siRNAs that help protect against related viral infections.
  • We discovered that defective viral genomes (DVGs) not only contribute to vDNA and cvDNA synthesis but also enhance the RNAi response against viruses, with the Dicer-2 protein regulating vDNA production in a unique way.

Article Abstract

The RNAi pathway confers antiviral immunity in insects. Virus-specific siRNA responses are amplified via the reverse transcription of viral RNA to viral DNA (vDNA). The nature, biogenesis, and regulation of vDNA are unclear. We find that vDNA produced during RNA virus infection of Drosophila and mosquitoes is present in both linear and circular forms. Circular vDNA (cvDNA) is sufficient to produce siRNAs that confer partially protective immunity when challenged with a cognate virus. cvDNAs bear homology to defective viral genomes (DVGs), and DVGs serve as templates for vDNA and cvDNA synthesis. Accordingly, DVGs promote the amplification of vDNA-mediated antiviral RNAi responses in infected Drosophila. Furthermore, vDNA synthesis is regulated by the DExD/H helicase domain of Dicer-2 in a mechanism distinct from its role in siRNA generation. We suggest that, analogous to mammalian RIG-I-like receptors, Dicer-2 functions like a pattern recognition receptor for DVGs to modulate antiviral immunity in insects.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5857290PMC
http://dx.doi.org/10.1016/j.chom.2018.02.001DOI Listing

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