Defective viral genomes from chikungunya virus are broad-spectrum antivirals and prevent virus dissemination in mosquitoes

Author:

Levi Laura I.ORCID,Rezelj Veronica V.ORCID,Henrion-Lacritick Annabelle,Erazo DianaORCID,Boussier JORCID,Vallet ThomasORCID,Bernhauerová VeronikaORCID,Suzuki YasutsuguORCID,Carrau Lucia,Weger-Lucarelli JamesORCID,Saleh Maria-CarlaORCID,Vignuzzi MarcoORCID

Abstract

Defective viral genomes (DVGs) are truncated and/or rearranged viral genomes produced during virus replication. Described in many RNA virus families, some of them have interfering activity on their parental virus and/or strong immunostimulatory potential, and are being considered in antiviral approaches. Chikungunya virus (CHIKV) is an alphavirus transmitted by Aedes spp. that infected millions of humans in the last 15 years. Here, we describe the DVGs arising during CHIKV infection in vitro in mammalian and mosquito cells, and in vivo in experimentally infected Aedes aegypti mosquitoes. We combined experimental and computational approaches to select DVG candidates most likely to have inhibitory activity and showed that, indeed, they strongly interfere with CHIKV replication both in mammalian and mosquito cells. We further demonstrated that some DVGs present broad-spectrum activity, inhibiting several CHIKV strains and other alphaviruses. Finally, we showed that pre-treating Aedes aegypti with DVGs prevented viral dissemination in vivo.

Funder

Defense Advanced Research Projects Agency

Laboratoire d'Excellence “Integrative Biology of Emerging Infectious Diseases”

French Foundation for Medical Research

France’s defence procurement agency

Publisher

Public Library of Science (PLoS)

Subject

Virology,Genetics,Molecular Biology,Immunology,Microbiology,Parasitology

Reference52 articles.

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