(2023) In silico design and immunoinformatics analysis of a chimeric vaccine construct based on Salmonella pathogenesis factors. Microbial Pathogenesis. p. 14. ISSN 0882-4010
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Abstract
Currently, there are two vaccines based on killed and/or weakened Salmonella bacteria, but no recombinant vaccine is available for preventing or treating the disease. We used an in silico approach to design a multi-epitope vaccine against Salmonella using OmpA, OmpS, SopB, SseB, SthA and FilC antigens. We predicted helper T lymphocyte, cytotoxic T lymphocyte, and IFN-gamma epitopes. The FilC sequence was used as a bovine TLR5 agonist, and the linkers KK, AAY, GPGPG and EAAAK were used to connect epitopes. The final sequence consisted of 747 amino acid residues, and the expressed soluble protein (similar to 79.6 kDa) was predicted to be both non-allergenic and antigenic. The tertiary structure of modeled protein was refined and validated, and the interactions of vaccine 3D structure were evaluated using molecular docking, and molecular dynamics simulation (RMSD, RMSF and Gy-ration). This structurally stable protein could interact with human TLR5. The C-ImmSim server predicted that this proposed vaccine likely induces an immune response by stimulating T and B cells, making it a potential candidate for further evaluation for the prevention and treatment of Salmonella infection.
Item Type: | Article |
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Keywords: | Peptide vaccine construct Immunoinformatics Molecular dynamics simulations Salmonella antigens enterica-serovar-typhimurium epitope peptide vaccine dendritic cells neural-networks protein immunogenicity immunity antigen web specificity Immunology Microbiology |
Page Range: | p. 14 |
Journal or Publication Title: | Microbial Pathogenesis |
Journal Index: | WoS |
Volume: | 180 |
Identification Number: | https://doi.org/10.1016/j.micpath.2023.106130 |
ISSN: | 0882-4010 |
Depositing User: | Mr mahdi sharifi |
URI: | http://eprints.ssu.ac.ir/id/eprint/30510 |
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