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The cucumber mosaic virus 1a protein regulates interactions between the 2b protein and ARGONAUTE 1 while maintaining the silencing suppressor activity of the 2b protein.

Published version
Peer-reviewed

Type

Article

Change log

Abstract

The cucumber mosaic virus (CMV) 2b viral suppressor of RNA silencing (VSR) is a potent counter-defense and pathogenicity factor that inhibits antiviral silencing by titration of short double-stranded RNAs. It also disrupts microRNA-mediated regulation of host gene expression by binding ARGONAUTE 1 (AGO1). But in Arabidopsis thaliana complete inhibition of AGO1 is counterproductive to CMV since this triggers another layer of antiviral silencing mediated by AGO2, de-represses strong resistance against aphids (the insect vectors of CMV), and exacerbates symptoms. Using confocal laser scanning microscopy, bimolecular fluorescence complementation, and co-immunoprecipitation assays we found that the CMV 1a protein, a component of the viral replicase complex, regulates the 2b-AGO1 interaction. By binding 2b protein molecules and sequestering them in P-bodies, the 1a protein limits the proportion of 2b protein molecules available to bind AGO1, which ameliorates 2b-induced disease symptoms, and moderates induction of resistance to CMV and to its aphid vector. However, the 1a protein-2b protein interaction does not inhibit the ability of the 2b protein to inhibit silencing of reporter gene expression in agroinfiltration assays. The interaction between the CMV 1a and 2b proteins represents a novel regulatory system in which specific functions of a VSR are selectively modulated by another viral protein. The finding also provides a mechanism that explains how CMV, and possibly other viruses, modulates symptom induction and manipulates host-vector interactions.

Description

Keywords

Arabidopsis, Arabidopsis Proteins, Argonaute Proteins, Cucumovirus, Methyltransferases, Plant Diseases, Viral Proteins

Journal Title

PLoS Pathog

Conference Name

Journal ISSN

1553-7366
1553-7374

Volume Title

16

Publisher

Public Library of Science (PLoS)
Sponsorship
Biotechnology and Biological Sciences Research Council (1646532)
BBSRC (1646532)
Biotechnology and Biological Sciences Research Council (BB/J011762/1)
Leverhulme Trust (F/09 741/F)
Leverhulme Trust (RPF-2012-667)
Isaac Newton Trust (1207(1))
Biotechnology and Biological Sciences Research Council (BB/P023223/1)
Biotechnology and Biological Sciences Research Council (BB/M011194/1)
Major funding for this project was provided to JPC by the UK Biotechnological and Biological Sciences Research Council (Grant numbers BB/J011762/1 and GCRF BB/P023223/1: http://www.bbsrc.ac.uk/) and LGW was supported by a studentship from the BBSRC-Cambridge University Doctoral Training Program (BB/M011194/1) and SJR was supported by a Postdoctoral Fellowship from the National Research Foundation (Republic of Korea). Additional funding was obtained from the Leverhulme Trust (Grant numbers RPG-2012-667 and F/09741/F: https://www.leverhulme.ac.uk/), and Newton Trust (http://www.newtontrust.cam.ac.uk/: grant number 12.07/I) to AMM. The funders had no role in study design, data collection and analysis, decision to publish, or preparation of the manuscript.