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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.
Abstract:
Arboviruses continue to threaten a significant portion of the human population, and a better understanding is needed of the determinants of successful arbovirus infection of arthropod vectors. Avoiding apoptosis has been shown to be one such determinant. Previous work showed that a Sindbis virus (SINV) construct called MRE/rpr that expresses the Drosophila pro-apoptotic protein Reaper via a duplicated subgenomic promoter had a reduced ability to orally infect Aedes aegypti mosquitoes at 3 days post-blood meal (PBM), but this difference diminished over time as virus variants containing deletions in the inserted reaper gene rapidly predominated. In order to further clarify the effect of midgut apoptosis on disseminated infection in Ae. aegypti, we constructed MRE/rprORF, a version of SINV containing reaper inserted into the structural open reading frame (ORF) as an in-frame fusion. MRE/rprORF successfully expressed Reaper, replicated similarly to MRE/rpr in cell lines, induced apoptosis in cultured cells, and caused increased effector caspase activity in mosquito midgut tissue. Mosquitoes that fed on blood containing MRE/rprORF developed significantly less midgut and disseminated infection when compared to MRE/rpr or a control virus up to at least 7 days PBM, when less than 50% of mosquitoes that ingested MRE/rprORF had detectable disseminated infection, compared with around 80% or more of mosquitoes fed with MRE/rpr or control virus. However, virus titer in the minority of mosquitoes that became infected with MRE/rprORF was not significantly different from control virus. Deep sequencing of virus populations from ten mosquitoes infected with MRE/rprORF indicated that the reaper insert was stable, with only a small number of point mutations and no deletions being observed at frequencies greater than 1%. Our results indicate that expression of Reaper by this method significantly reduces infection prevalence, but if infection is established then Reaper expression has limited ability to continue to suppress replication.
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.
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