Specific Cell Targeting by Toxoplasma gondii Displaying Functional Single-Chain Variable Fragment as a Novel Strategy; A Proof of Principle
Author:
Aljieli Muna12, Rivière Clément1, Lantier Louis1, Moiré Nathalie1ORCID, Lakhrif Zineb1, Boussemart Anne-France1, Cnudde Thomas1, Lajoie Laurie1ORCID, Aubrey Nicolas1ORCID, Ahmed Elhadi M.2, Dimier-Poisson Isabelle1, Di-Tommaso Anne1ORCID, Mévélec Marie-Noëlle1
Affiliation:
1. BioMAP, UMR ISP 1282 INRAE, Université de Tours, 37200 Tours, France 2. Faculty of Pharmacy, University of Gezira, Wad Madani 21111, Sudan
Abstract
Toxoplasma gondii holds significant therapeutic potential; however, its nonspecific invasiveness results in off-target effects. The purpose of this study is to evaluate whether T. gondii specificity can be improved by surface display of scFv directed against dendritic cells’ endocytic receptor, DEC205, and immune checkpoint PD-L1. Anti-DEC205 scFv was anchored to the T. gondii surface either directly via glycosylphosphatidylinositol (GPI) or by fusion with the SAG1 protein. Both constructs were successfully expressed, but the binding results suggested that the anti-DEC-SAG1 scFv had more reliable functionality towards recombinant DEC protein and DEC205-expressing MutuDC cells. Two anti-PD-L1 scFv constructs were developed that differed in the localization of the HA tag. Both constructs were adequately expressed, but the localization of the HA tag determined the functionality by binding to PD-L1 protein. Co-incubation of T. gondii displaying anti-PD-L1 scFv with tumor cells expressing/displaying different levels of PD-L1 showed strong binding depending on the level of available biomarker. Neutralization assays confirmed that binding was due to the specific interaction between anti-PD-L1 scFv and its ligand. A mixed-cell assay showed that T. gondii expressing anti-PD-L1 scFv predominately targets the PD-L1-positive cells, with negligible off-target binding. The recombinant RH-PD-L1-C strain showed increased killing ability on PD-L1+ tumor cell lines compared to the parental strain. Moreover, a co-culture assay of target tumor cells and effector CD8+ T cells showed that our model could inhibit PD1/PD-L1 interaction and potentiate T-cell immune response. These findings highlight surface display of antibody fragments as a promising strategy of targeting replicative T. gondii strains while minimizing nonspecific binding.
Funder
Campus France Government of Sudan Rabelais Foundation, University of Tours University of Tours
Reference65 articles.
1. Pulling together: An integrated model of Toxoplasma cell invasion;Carruthers;Curr. Opin. Microbiol.,2007 2. Daher, D., Shaghlil, A., Sobh, E., Hamie, M., Hassan, M.E., Moumneh, M.B., Itani, S., El Hajj, R., Tawk, L., and El Sabban, M. (2021). Comprehensive overview of toxoplasma gondii-induced and associated diseases. Pathogens, 10. 3. Immune response and immunopathology during toxoplasmosis;Dupont;Semin. Immunopathol.,2012 4. Resistance to Virus Challenge in Mice Infected with Protozoa or Bacteria;Remington;Proc. Soc. Exp. Biol. Med.,1969 5. Immunity and Intracellular Infection: Resistance to Bacteria in Mice Infected with a Protozoan;Ruskin;Science,1968
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