Wolbachia strain wAu differs in cellular perturbation and virus inhibition profiles from previously characterised Wolbachia strains
Rainey, S.; Geoghegan, V.; Lefteri, D.; Ant, T.; Martinez, J.; McNamara, C.; Sinkins, S. P.
Show abstract
Some strains of the inherited bacterium Wolbachia have been shown to be effective at reducing the transmission of dengue and other positive-sense RNA viruses by Aedes aegypti in both laboratory and field settings and are being deployed for dengue control. The degree of virus inhibition varies between Wolbachia strains; density and tissue tropism can contribute to these differences but there are also indications that this is not the only factor involved: for example, strains wAu and wAlbA are maintained at similar densities but only wAu produces strong dengue inhibition. We previously reported perturbations in lipid transport dynamics, including sequestration of cholesterol in lipid droplets, with strains wMel / wMelPop in Ae. aegypti. Here we show that strain wAu does not produce the same cholesterol sequestration phenotype despite displaying strong virus inhibition and moreover, in contrast to wMel, wAu antiviral activity was not rescued by cyclodextrin treatment. To further investigate the cellular basis underlying these differences, proteomic analysis of midguts was carried out on Ae. aegypti lines and revealed that wAu-carrying midguts showed a distinct proteome when compared to Wolbachia-free, wMel- or wAlbA-carrying midguts, in particular with respect to lipid transport and metabolism. The data suggest a possible role for perturbed RNA processing pathways in wAu virus inhibition. Together these results indicate that wAu shows unique features in its inhibition of arboviruses compared to previously characterized Wolbachia strains. Author SummaryWolbachia endosymbionts can block transmission of dengue virus by Aedes aegypti mosquitoes, and Wolbachia release programs for dengue control are now being undertaken in several countries. Understanding the mechanisms of Wolbachia-mediated antiviral activity is important for maximizing the efficacy of this control approach. Using functional and proteomic analyses, this study indicates that different strains of Wolbachia perturb cellular functions in diverse ways and display different antiviral profiles. These differences raise the possibility that Wolbachia strain switching could be used to counteract viral escape mutations, should they arise and threaten the efficacy of dengue control programmes.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Transmission potential of Floridian Aedes aegypti mosquitoes for dengue virus serotype 4: Implications for estimating local dengue risk 94%
- Microbial composition in larval water enhances Aedes aegypti development but reduces transmissibility of Zika virus 93%
- Binding of Leishmania infantum LPG to the midgut is not sufficient to define vector competence in Lutzomyia longipalpis sand flies 93%
Similar papers in this journal
- Aedes aegypti SNAP and a calcium transporter ATPase influence dengue virus dissemination. 97%
- Wolbachia wAlbB inhibit dengue and Zika infection in the mosquito Aedes aegypti with an Australian background 95%
- Belgian Culex pipiens pipiens are competent vectors for West Nile virus but not Usutu virus 95%
Similar papers in this journal
- Novel phenotype of Wolbachia strain wPip in Aedes aegypti challenges assumptions on mechanisms of Wolbachia-mediated dengue virusinhibition . 95%
- Paratransgenic manipulation of tsetse miR275 alters the physiological homeostasis of the flys midgut environment 94%
- The salivary protein Saglin facilitates efficient midgut colonization of Anopheles mosquitoes by malaria parasites 93%
Similar papers in this journal
- The dengue virus NS1 protein alters Aedes aegypti midgut permeability and favors virus dissemination 97%
- Behavioral Manipulation of Ixodes scapularis by Ehrlichia muris eauclairensis: Implications for Tick-Borne Disease Transmission 94%
- A novel mycovirus evokes transcriptional rewiring in the fungus Malassezia and stimulates interferon-β production in macrophages 93%
Similar papers in this journal
- A Laboratory-Adapted and a Clinical Isolate of Dengue Virus Serotype 4 Differently Impact Aedes aegypti Life-History Traits Relevant to Vectorial Capacity 94%
- Wolbachia and its pWCP plasmid show differential dynamics during the development of Culex mosquitoes 93%
- Trypanosoma cruzi isolates naturally adapted to congenital transmission display a unique strategy of transplacental passage 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.