Cargando…

Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19

Brucellosis is an important zoonotic disease that causes great economic losses. Vaccine immunisation is the main strategy for the prevention and control of brucellosis. Although live attenuated vaccines play important roles in the prevention of this disease, they also have several limitations, such...

Descripción completa

Detalles Bibliográficos
Autores principales: He, Chuan-Yu, Yang, Jiang-Hua, Ye, Yin-Bo, Zhao, Hai-Long, Liu, Meng-Zhi, Yang, Qi-Lin, Liu, Bao-Shan, He, Sun, Chen, Ze-Liang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9074784/
https://www.ncbi.nlm.nih.gov/pubmed/35529865
http://dx.doi.org/10.3389/fimmu.2022.874871
_version_ 1784701542762283008
author He, Chuan-Yu
Yang, Jiang-Hua
Ye, Yin-Bo
Zhao, Hai-Long
Liu, Meng-Zhi
Yang, Qi-Lin
Liu, Bao-Shan
He, Sun
Chen, Ze-Liang
author_facet He, Chuan-Yu
Yang, Jiang-Hua
Ye, Yin-Bo
Zhao, Hai-Long
Liu, Meng-Zhi
Yang, Qi-Lin
Liu, Bao-Shan
He, Sun
Chen, Ze-Liang
author_sort He, Chuan-Yu
collection PubMed
description Brucellosis is an important zoonotic disease that causes great economic losses. Vaccine immunisation is the main strategy for the prevention and control of brucellosis. Although live attenuated vaccines play important roles in the prevention of this disease, they also have several limitations, such as residual virulence and difficulty in the differentiation of immunisation and infection. We developed and evaluated a new bacterial ghost vaccine of Brucella abortus A19 by a new double inactivation method. The results showed that the bacterial ghost vaccine of Brucella represents a more safe and efficient vaccine for brucellosis. We further characterised the antigenic components and signatures of the vaccine candidate A19BG. Here, we utilised a mass spectrometry-based label-free relative quantitative proteomics approach to investigate the global proteomics changes in A19BGs compared to its parental A19. The proteomic analysis identified 2014 proteins, 1116 of which were differentially expressed compared with those in A19. The common immunological proteins of OMPs (Bcsp31, Omp25, Omp10, Omp19, Omp28, and Omp2a), HSPs (DnaK, GroS, and GroL), and SodC were enriched in the proteome of A19BG. By protein micro array-based antibody profiling, significant differences were observed between A19BG and A19 immune response, and a number of signature immunogenic proteins were identified. Two of these proteins, the BMEII0032 and BMEI0892 proteins were significantly different (P < 0.01) in distinguishing between A19 and A19BG immune sera and were identified as differential diagnostic antigens for the A19BG vaccine candidate. In conclusion, using comparative proteomics and antibody profiling, protein components and signature antigens were identified for the ghost vaccine candidate A19BG, which are valuable for further developing the vaccine and its monitoring assays.
format Online
Article
Text
id pubmed-9074784
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-90747842022-05-07 Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19 He, Chuan-Yu Yang, Jiang-Hua Ye, Yin-Bo Zhao, Hai-Long Liu, Meng-Zhi Yang, Qi-Lin Liu, Bao-Shan He, Sun Chen, Ze-Liang Front Immunol Immunology Brucellosis is an important zoonotic disease that causes great economic losses. Vaccine immunisation is the main strategy for the prevention and control of brucellosis. Although live attenuated vaccines play important roles in the prevention of this disease, they also have several limitations, such as residual virulence and difficulty in the differentiation of immunisation and infection. We developed and evaluated a new bacterial ghost vaccine of Brucella abortus A19 by a new double inactivation method. The results showed that the bacterial ghost vaccine of Brucella represents a more safe and efficient vaccine for brucellosis. We further characterised the antigenic components and signatures of the vaccine candidate A19BG. Here, we utilised a mass spectrometry-based label-free relative quantitative proteomics approach to investigate the global proteomics changes in A19BGs compared to its parental A19. The proteomic analysis identified 2014 proteins, 1116 of which were differentially expressed compared with those in A19. The common immunological proteins of OMPs (Bcsp31, Omp25, Omp10, Omp19, Omp28, and Omp2a), HSPs (DnaK, GroS, and GroL), and SodC were enriched in the proteome of A19BG. By protein micro array-based antibody profiling, significant differences were observed between A19BG and A19 immune response, and a number of signature immunogenic proteins were identified. Two of these proteins, the BMEII0032 and BMEI0892 proteins were significantly different (P < 0.01) in distinguishing between A19 and A19BG immune sera and were identified as differential diagnostic antigens for the A19BG vaccine candidate. In conclusion, using comparative proteomics and antibody profiling, protein components and signature antigens were identified for the ghost vaccine candidate A19BG, which are valuable for further developing the vaccine and its monitoring assays. Frontiers Media S.A. 2022-04-22 /pmc/articles/PMC9074784/ /pubmed/35529865 http://dx.doi.org/10.3389/fimmu.2022.874871 Text en Copyright © 2022 He, Yang, Ye, Zhao, Liu, Yang, Liu, He and Chen 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
He, Chuan-Yu
Yang, Jiang-Hua
Ye, Yin-Bo
Zhao, Hai-Long
Liu, Meng-Zhi
Yang, Qi-Lin
Liu, Bao-Shan
He, Sun
Chen, Ze-Liang
Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19
title Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19
title_full Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19
title_fullStr Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19
title_full_unstemmed Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19
title_short Proteomic and Antibody Profiles Reveal Antigenic Composition and Signatures of Bacterial Ghost Vaccine of Brucella abortus A19
title_sort proteomic and antibody profiles reveal antigenic composition and signatures of bacterial ghost vaccine of brucella abortus a19
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9074784/
https://www.ncbi.nlm.nih.gov/pubmed/35529865
http://dx.doi.org/10.3389/fimmu.2022.874871
work_keys_str_mv AT hechuanyu proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT yangjianghua proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT yeyinbo proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT zhaohailong proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT liumengzhi proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT yangqilin proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT liubaoshan proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT hesun proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19
AT chenzeliang proteomicandantibodyprofilesrevealantigeniccompositionandsignaturesofbacterialghostvaccineofbrucellaabortusa19