nerc.ac.uk

Induction and suppression of tick cell antiviral RNAi responses by tick-borne flaviviruses

Schnettler, Esther; Tykalova, Hana; Watson, Mick; Sharma, Mayuri; Sterken, Mark G.; Obbard, Darren J.; Lewis, Samuel H.; McFarlane, Melanie; Bell-Sakyi, Lesley; Barry, Gerald; Weisheit, Sabine; Best, Sonja M.; Kuhn, Richard J.; Pijlman, Gorben P.; Chase-Topping, Margo E.; Gould, Ernest A.; Grubhoffer, Libor; Fazakerley, John K.; Kohl, Alain. 2014 Induction and suppression of tick cell antiviral RNAi responses by tick-borne flaviviruses. Nucleic Acids Research, 42 (14). 9436-9446. https://doi.org/10.1093/nar/gku657

Before downloading, please read NORA policies.
[img]
Preview
Text
N508503JA.pdf - Published Version
Available under License Creative Commons Attribution.

Download (1MB) | Preview

Abstract/Summary

Arboviruses are transmitted by distantly related arthropod vectors such as mosquitoes (class Insecta) and ticks (class Arachnida). RNA interference (RNAi) is the major antiviral mechanism in arthropods against arboviruses. Unlike in mosquitoes, tick antiviral RNAi is not understood, although this information is important to compare arbovirus/host interactions in different classes of arbovirus vectos. Using an Ixodes scapularis-derived cell line, key Argonaute proteins involved in RNAi and the response against tick-borne Langat virus (Flaviviridae) replication were identified and phylogenetic relationships characterized. Analysis of small RNAs in infected cells showed the production of virus-derived small interfering RNAs (viRNAs), which are key molecules of the antiviral RNAi response. Importantly, viRNAs were longer (22 nucleotides) than those from other arbovirus vectors and mapped at highest frequency to the termini of the viral genome, as opposed to mosquito-borne flaviviruses. Moreover, tick-borne flaviviruses expressed subgenomic flavivirus RNAs that interfere with tick RNAi. Our results characterize the antiviral RNAi response in tick cells including phylogenetic analysis of genes encoding antiviral proteins, and viral interference with this pathway. This shows important differences in antiviral RNAi between the two major classes of arbovirus vectors, and our data broadens our understanding of arthropod antiviral RNAi.

Item Type: Publication - Article
Digital Object Identifier (DOI): https://doi.org/10.1093/nar/gku657
UKCEH and CEH Sections/Science Areas: UKCEH Fellows
ISSN: 0305-1048
Additional Information. Not used in RCUK Gateway to Research.: Open Access paper - Official URL link provides full text
NORA Subject Terms: Biology and Microbiology
Date made live: 26 Sep 2014 11:52 +0 (UTC)
URI: https://nora.nerc.ac.uk/id/eprint/508503

Actions (login required)

View Item View Item

Document Downloads

Downloads for past 30 days

Downloads per month over past year

More statistics for this item...