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An MHV-68 Mutator Phenotype Mutant Virus, Confirmed by CRISPR/Cas9-Mediated Gene Editing of the Viral DNA Polymerase Gene, Shows Reduced Viral Fitness
oleh: Erika Trompet, Arturo Temblador, Sarah Gillemot, Dimitrios Topalis, Robert Snoeck, Graciela Andrei
Format: | Article |
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Diterbitkan: | MDPI AG 2021-05-01 |
Deskripsi
Drug resistance studies on human γ-herpesviruses are hampered by the absence of an in vitro system that allows efficient lytic viral replication. Therefore, we employed murine γ-herpesvirus-68 (MHV-68) that efficiently replicates in vitro as a model to study the antiviral resistance of γ-herpesviruses. In this study, we investigated the mechanism of resistance to nucleoside (ganciclovir (GCV)), nucleotide (cidofovir (CDV), HPMP-5azaC, HPMPO-DAPy) and pyrophosphate (foscarnet (PFA)) analogues and the impact of these drug resistance mutations on viral fitness. Viral fitness was determined by dual infection competition assays, where MHV-68 drug-resistant viral clones competed with the wild-type virus in the absence and presence of antivirals. Using next-generation sequencing, the composition of the viral populations was determined at the time of infection and after 5 days of growth. Antiviral drug resistance selection resulted in clones harboring mutations in the viral DNA polymerase (DP), denoted Y383S<sup>GCV</sup>, Q827R<sup>HPMP-5azaC</sup>, G302W<sup>PFA</sup>, K442T<sup>PFA</sup>, G302W+K442T<sup>PFA</sup>, C297W<sup>HPMPO-DAPy</sup> and C981Y<sup>CDV</sup>. Without antiviral pressure, viral clones Q827R<sup>HPMP-5azaC</sup>, G302W<sup>PFA</sup>, K442T<sup>PFA</sup> and G302W+K442T<sup>PFA</sup> grew equal to the wild-type virus. However, in the presence of antivirals, these mutants had a growth advantage over the wild-type virus that was moderately to very strongly correlated with antiviral resistance. The Y383S<sup>GCV</sup> mutant was more fit than the wild-type virus with and without antivirals, except in the presence of brivudin. The C297W and C981Y changes were associated with a mutator phenotype and had a severely impaired viral fitness in the absence and presence of antivirals. The mutator phenotype caused by C297W in MHV-68 DP was validated by using a CRISPR/Cas9 genome editing approach.