Expressing the Pro-Apoptotic Reaper Protein via Insertion into the Structural Open Reading Frame of Sindbis Virus

Alexis Carpenter1, Scott R Santos2, Rollie J Clem1

  • 1Division of Biology, Kansas State University, Manhattan, KS 66506, USA.

Viruses
|September 23, 2022
PubMed

Insights

Expressing the pro-apoptotic protein Reaper in Sindbis virus (SINV) significantly reduced arbovirus infection prevalence in mosquitoes. However, once established, Reaper expression had limited impact on viral replication.

Area of Science:

  • Virology
  • Entomology
  • Molecular Biology

Background:

  • Arboviruses pose a significant threat to human health.
  • Understanding arbovirus infection determinants in arthropod vectors is crucial.
  • Avoiding apoptosis is a key factor for successful arbovirus transmission.

Purpose of the Study:

  • To investigate the impact of midgut apoptosis on arbovirus dissemination in *Aedes aegypti* mosquitoes.
  • To clarify the role of the pro-apoptotic protein Reaper in Sindbis virus (SINV) infection dynamics.

Main Methods:

  • Constructed a SINV variant (MRE/rprORF) with the *reaper* gene inserted into the structural open reading frame (ORF).
  • Assessed Reaper expression, apoptosis induction, and viral replication in cell lines and mosquito midgut tissue.
  • Quantified midgut and disseminated infection rates and viral titers in mosquitoes orally infected with MRE/rprORF, MRE/rpr, or a control virus up to 7 days post-blood meal (PBM).
  • Performed deep sequencing to analyze the stability of the *reaper* insert in MRE/rprORF.

Main Results:

  • MRE/rprORF successfully expressed Reaper, induced apoptosis, and increased caspase activity in mosquito midguts.
  • Significantly reduced midgut and disseminated infection prevalence in mosquitoes fed MRE/rprORF compared to controls up to 7 days PBM.
  • Infection prevalence with MRE/rprORF was <50%, versus >80% for controls.
  • Viral titers were not significantly different in the minority of mosquitoes infected with MRE/rprORF.
  • Deep sequencing confirmed the stability of the *reaper* insert in MRE/rprORF.

Conclusions:

  • Expression of Reaper via MRE/rprORF significantly reduces arbovirus infection prevalence in *Ae. aegypti* mosquitoes.
  • Reaper expression effectively limits infection establishment but has limited capacity to suppress viral replication once infection is established.
  • Targeting midgut apoptosis is a viable strategy to control arbovirus transmission by insect vectors.