Host Derivation of Sindbis Virus Influences Mammalian Type I Interferon Response to Infection

John M Crawford1, Aaron M Buechlein2, Davis A Moline1

  • 1Department of Biology, Indiana University, Bloomington, IN 47405, USA.

Viruses
|August 26, 2023
PubMed

Insights

Mosquito-derived arboviruses trigger a stronger host response and shut down translation faster in mammalian cells. This rapid translation shut-off may counteract the interferon response, aiding viral adaptation.

Area of Science:

  • Virology
  • Molecular Biology
  • Immunology

Background:

  • Arboviruses adapt to replicate in both mosquito vectors and mammalian hosts.
  • Mosquito-derived viruses exhibit enhanced mammalian cell infection compared to mammalian-derived viruses.
  • Host-specific viral adaptations are hypothesized to influence host responses.

Purpose of the Study:

  • To investigate the differential transcriptional responses of mammalian cells to mosquito- versus mammalian-derived Sindbis virus (SINV).
  • To elucidate the mechanisms behind altered host-cell interactions based on viral origin.

Main Methods:

  • RNA-sequencing analysis of Human Embryonic Kidney 293 (HEK-293) cells infected with mosquito (C7/10)- or mammalian (BHK-21)-derived SINV.
  • Quantification of interferon-β (IFN-β) and interferon-stimulated gene (ISG) transcripts and translation.
  • Measurement of phosphorylated eukaryotic translation elongation factor-2 (eEF2) levels.

Main Results:

  • Mosquito-derived SINV elicited a more robust transcriptional response in HEK-293 cells.
  • Despite increased ISG transcripts, ISG translation was suppressed in cells infected with mosquito-derived SINV.
  • Mosquito-derived SINV infection led to a more rapid shut-off of host cell translation, associated with elevated p-eEF2.

Conclusions:

  • Viral origin significantly impacts host cell transcriptional and translational responses.
  • Mosquito-derived SINV employs mechanisms, like rapid translation shut-off via eEF2, to potentially evade host antiviral defenses.
  • These findings highlight arbovirus adaptation strategies for mammalian host infection.