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In Silico Prediction of Plasmodium falciparum PfRipr Epitopes as Vaccine Candidates

作者:Alexander J Laurenson, Emily M. Stucke, Ryan Scalsky, M. Laurens · 发表于:Journal of the Pediatric Infectious Diseases Society · 年份:2023 · DOI:10.1093/jpids/piad070.012 · 被引用次数:2

The global malarial death toll in 2020 was ~627,000, 77% of which occurred in children <5 years of age. Plasmodium falciparum is the most lethal parasite of its genus but has evaded vaccine development due to its complex life cycle and redundant invasion mechanisms. Epitope-based vaccines hold significant promise due to their ability to target dominant and/or conserved regions in highly antigenically variable pathogens, including malaria. The recently characterized P. falciparum merozoite Rh5 interacting protein (PfRipr) is nonredundant, highly conserved, and essential for erythrocyte invasion, making it an ideal target for a bloodstage malaria vaccine. (Figure 1) We sought to analyze P. falciparum sequences from highly endemic areas using bioinformatic approaches that identify candidate PfRipr epitope-based bloodstage vaccine antigens for inclusion in a multiantigen vaccine. Figure 1: Model of binding and insertion of PRCR complex to erythrocyte basigin in merozoite invasion. Adapted from Scally et al. 2022. (https://doi.org/10.1038/s41564-022-01261-2 , https://creativecommons.org/licenses/by/4.0/) Using two P. falciparum sequence datasets from Burkina Faso and Uganda, we assessed the immunogenic potential of PfRipr epitopes for T-cell receptor binding and B-cell recognition. T-cell receptor binding was predicted using NetMHCpan and NetMHCIIpan searching against MHC I and II alleles with high regional frequencies. Using an in-silico 3D model of PfRipr predicted via...