Key result
CrPV infection of Drosophila S2 cells results in host translational shutoff via dissociation of eIF4G and eIF4E and induction of eIF2alpha phosphorylation, promoting viral protein synthesis.
Alteration of the deIF4F complex contributes to the shutoff of host translation during CrPV infection, promoting viral protein synthesis.
May inform viral translation mechanisms in insects; leaves open relevance to mammalian hosts or clinical translation.
The dicistrovirus is a positive-strand single-stranded RNA virus that possesses two internal ribosome entry sites (IRES) that direct translation of distinct open reading frames encoding the viral structural and nonstructural proteins. Through an unusual mechanism, the intergenic region (IGR) IRES responsible for viral structural protein expression mimics a tRNA to directly recruit the ribosome and set the ribosome into translational elongation. In this study, we explored the mechanism of host translational shutoff in Drosophila S2 cells infected by the dicistrovirus, cricket paralysis virus (CrPV). CrPV infection of S2 cells results in host translational shutoff concomitant with an increase in viral protein synthesis. CrPV infection resulted in the dissociation of eukaryotic translation initiation factor 4G (eIF4G) and eIF4E early in infection and the induction of deIF2alpha phosphorylation at 3 h postinfection, which lags after the initial inhibition of host translation. Forced dephosphorylation of deIF2alpha by overexpression of dGADD34, which activates protein phosphatase I, did not prevent translational shutoff nor alter virus production, demonstrating that deIF2alpha phosphorylation is dispensable for host translational shutoff. However, premature induction of deIF2alpha phosphorylation by thapsigargin treatment early in infection reduced viral protein synthesis and replication. Finally, translation mediated by the 5' untranslated region (5'UTR) and the IGR IRES were resistant to impairment of eIF4F or eIF2 in translation extracts. These results support a model by which the alteration of the deIF4F complex contribute to the shutoff of host translation during CrPV infection, thereby promoting viral protein synthesis via the CrPV 5'UTR and IGR IRES.
No takes yet. Share an insight, caveat, or question.
Garrey et al. (2009) studied Cricket Paralysis Virus Infection. Cricket Paralysis Virus (CrPV) infection vs. Mock infection was evaluated on Host translational shutoff. CrPV infection of Drosophila S2 cells results in host translational shutoff via dissociation of eIF4G and eIF4E and induction of eIF2alpha phosphorylation, promoting viral protein synthesis.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: