Viral Class 1 RNase III Involved in Suppression of RNA Silencing
Open Access
- 1 June 2005
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 79 (11) , 7227-7238
- https://doi.org/10.1128/jvi.79.11.7227-7238.2005
Abstract
Double-stranded RNA (dsRNA)-specific endonucleases belonging to RNase III classes 3 and 2 process dsRNA precursors to small interfering RNA (siRNA) or microRNA, respectively, thereby initiating and amplifying RNA silencing-based antiviral defense and gene regulation in eukaryotic cells. However, we now provide evidence that a class 1 RNase III is involved in suppression of RNA silencing. The single-stranded RNA genome of sweet potato chlorotic stunt virus (SPCSV) encodes an RNase III (RNase3) homologous to putative class 1 RNase IIIs of unknown function in rice and Arabidopsis. We show that RNase3 has dsRNA-specific endonuclease activity that enhances the RNA-silencing suppression activity of another protein (p22) encoded by SPCSV. RNase3 and p22 coexpression reduced siRNA accumulation more efficiently than p22 alone in Nicotiana benthamiana leaves expressing a strong silencing inducer (i.e., dsRNA). RNase3 did not cause intracellular silencing suppression or reduce accumulation of siRNA in the absence of p22 or enhance silencing suppression activity of a protein encoded by a heterologous virus. No other known RNA virus encodes an RNase III or uses two independent proteins cooperatively for RNA silencing suppression.Keywords
This publication has 65 references indexed in Scilit:
- Genetic and Functional Diversification of Small RNA Pathways in PlantsPLoS Biology, 2004
- Long-Distance Movement, Virulence, and RNA Silencing Suppression Controlled by a Single Protein in Hordei- and Potyviruses: Complementary Functions between Virus FamiliesJournal of Virology, 2002
- Cleavage of Scarecrow-like mRNA Targets Directed by a Class of Arabidopsis miRNAScience, 2002
- Complete Genome Sequence and Analyses of the Subgenomic RNAs of Sweet Potato Chlorotic Stunt Virus Reveal Several New Features for the Genus CrinivirusJournal of Virology, 2002
- RNA interferenceNature, 2002
- On the Role of RNA Amplification in dsRNA-Triggered Gene SilencingCell, 2001
- A Cellular Function for the RNA-Interference Enzyme Dicer in the Maturation of thelet-7Small Temporal RNAScience, 2001
- HC-Pro Suppression of Transgene Silencing Eliminates the Small RNAs but Not Transgene Methylation or the Mobile SignalPlant Cell, 2001
- Gene Silencing without DNA: RNA-Mediated Cross-Protection between VirusesPlant Cell, 1999
- Symptoms, aetiology and serological analysis of sweet potato virus disease in UgandaPlant Pathology, 1998