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Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics

BACKGROUND: Nocardia genus, a complex group of species classified to be aerobic actinomycete, can lead to severe concurrent infection as well as disseminated infection, typically in immunocompromised patients. With the expansion of the susceptible population, the incidence of Nocardia has been gradu...

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Autores principales: Zhu, Fei, Tan, Caixia, Li, Chunhui, Ma, Shiyang, Wen, Haicheng, Yang, Hang, Rao, Mingjun, Zhang, Peipei, Peng, Wenzhong, Cui, Yanhui, Chen, Jie, Pan, Pinhua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9952739/
https://www.ncbi.nlm.nih.gov/pubmed/36845087
http://dx.doi.org/10.3389/fimmu.2023.1100188
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author Zhu, Fei
Tan, Caixia
Li, Chunhui
Ma, Shiyang
Wen, Haicheng
Yang, Hang
Rao, Mingjun
Zhang, Peipei
Peng, Wenzhong
Cui, Yanhui
Chen, Jie
Pan, Pinhua
author_facet Zhu, Fei
Tan, Caixia
Li, Chunhui
Ma, Shiyang
Wen, Haicheng
Yang, Hang
Rao, Mingjun
Zhang, Peipei
Peng, Wenzhong
Cui, Yanhui
Chen, Jie
Pan, Pinhua
author_sort Zhu, Fei
collection PubMed
description BACKGROUND: Nocardia genus, a complex group of species classified to be aerobic actinomycete, can lead to severe concurrent infection as well as disseminated infection, typically in immunocompromised patients. With the expansion of the susceptible population, the incidence of Nocardia has been gradually growing, accompanied by increased resistance of the pathogen to existing therapeutics. However, there is no effective vaccine against this pathogen yet. In this study, a multi-epitope vaccine was designed against the Nocardia infection using reverse vaccinology combined with immunoinformatics approaches. METHODS: First, the proteomes of 6 Nocardia subspecies Nocardia subspecies (Nocardia farcinica, Nocardia cyriacigeorgica, Nocardia abscessus, Nocardia otitidiscaviarum, Nocardia brasiliensis and Nocardia nova) were download NCBI (National Center for Biotechnology Information) database on May 1st, 2022 for the target proteins selection. The essential, virulent-associated or resistant-associated, surface-exposed, antigenic, non-toxic, and non-homologous with the human proteome proteins were selected for epitope identification. The shortlisted T-cell and B-cell epitopes were fused with appropriate adjuvants and linkers to construct vaccines. The physicochemical properties of the designed vaccine were predicted using multiple online servers. The Molecular docking and molecular dynamics (MD) simulation were performed to understand the binding pattern and binding stability between the vaccine candidate and Toll-like receptors (TLRs). The immunogenicity of the designed vaccines was evaluated via immune simulation. RESULTS: 3 proteins that are essential, virulent-associated or resistant-associated, surface-exposed, antigenic, non-toxic, and non-homologous with the human proteome were selected from 218 complete proteome sequences of the 6 Nocardia subspecies epitope identification. After screening, only 4 cytotoxic T lymphocyte (CTL) epitopes, 6 helper T lymphocyte (HTL) epitopes, and 8 B cell epitopes that were antigenic, non-allergenic, and non-toxic were included in the final vaccine construct. The results of molecular docking and MD simulation showed that the vaccine candidate has a strong affinity for TLR2 and TLR4 of the host and the vaccine-TLR complexes were dynamically stable in the natural environment. The results of the immune simulation indicated that the designed vaccine had the potential to induce strong protective immune responses in the host. The codon optimization and cloned analysis showed that the vaccine was available for mass production. CONCLUSION: The designed vaccine has the potential to stimulate long-lasting immunity in the host, but further studies are required to validate its safety and efficacy.
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spelling pubmed-99527392023-02-25 Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics Zhu, Fei Tan, Caixia Li, Chunhui Ma, Shiyang Wen, Haicheng Yang, Hang Rao, Mingjun Zhang, Peipei Peng, Wenzhong Cui, Yanhui Chen, Jie Pan, Pinhua Front Immunol Immunology BACKGROUND: Nocardia genus, a complex group of species classified to be aerobic actinomycete, can lead to severe concurrent infection as well as disseminated infection, typically in immunocompromised patients. With the expansion of the susceptible population, the incidence of Nocardia has been gradually growing, accompanied by increased resistance of the pathogen to existing therapeutics. However, there is no effective vaccine against this pathogen yet. In this study, a multi-epitope vaccine was designed against the Nocardia infection using reverse vaccinology combined with immunoinformatics approaches. METHODS: First, the proteomes of 6 Nocardia subspecies Nocardia subspecies (Nocardia farcinica, Nocardia cyriacigeorgica, Nocardia abscessus, Nocardia otitidiscaviarum, Nocardia brasiliensis and Nocardia nova) were download NCBI (National Center for Biotechnology Information) database on May 1st, 2022 for the target proteins selection. The essential, virulent-associated or resistant-associated, surface-exposed, antigenic, non-toxic, and non-homologous with the human proteome proteins were selected for epitope identification. The shortlisted T-cell and B-cell epitopes were fused with appropriate adjuvants and linkers to construct vaccines. The physicochemical properties of the designed vaccine were predicted using multiple online servers. The Molecular docking and molecular dynamics (MD) simulation were performed to understand the binding pattern and binding stability between the vaccine candidate and Toll-like receptors (TLRs). The immunogenicity of the designed vaccines was evaluated via immune simulation. RESULTS: 3 proteins that are essential, virulent-associated or resistant-associated, surface-exposed, antigenic, non-toxic, and non-homologous with the human proteome were selected from 218 complete proteome sequences of the 6 Nocardia subspecies epitope identification. After screening, only 4 cytotoxic T lymphocyte (CTL) epitopes, 6 helper T lymphocyte (HTL) epitopes, and 8 B cell epitopes that were antigenic, non-allergenic, and non-toxic were included in the final vaccine construct. The results of molecular docking and MD simulation showed that the vaccine candidate has a strong affinity for TLR2 and TLR4 of the host and the vaccine-TLR complexes were dynamically stable in the natural environment. The results of the immune simulation indicated that the designed vaccine had the potential to induce strong protective immune responses in the host. The codon optimization and cloned analysis showed that the vaccine was available for mass production. CONCLUSION: The designed vaccine has the potential to stimulate long-lasting immunity in the host, but further studies are required to validate its safety and efficacy. Frontiers Media S.A. 2023-02-02 /pmc/articles/PMC9952739/ /pubmed/36845087 http://dx.doi.org/10.3389/fimmu.2023.1100188 Text en Copyright © 2023 Zhu, Tan, Li, Ma, Wen, Yang, Rao, Zhang, Peng, Cui, Chen and Pan https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Zhu, Fei
Tan, Caixia
Li, Chunhui
Ma, Shiyang
Wen, Haicheng
Yang, Hang
Rao, Mingjun
Zhang, Peipei
Peng, Wenzhong
Cui, Yanhui
Chen, Jie
Pan, Pinhua
Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics
title Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics
title_full Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics
title_fullStr Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics
title_full_unstemmed Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics
title_short Design of a multi-epitope vaccine against six Nocardia species based on reverse vaccinology combined with immunoinformatics
title_sort design of a multi-epitope vaccine against six nocardia species based on reverse vaccinology combined with immunoinformatics
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9952739/
https://www.ncbi.nlm.nih.gov/pubmed/36845087
http://dx.doi.org/10.3389/fimmu.2023.1100188
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