Development of a novel multi-epitope vaccine for brucellosis prevention

被引:0
作者
Shang, Kaiyu [1 ]
Zhu, Yuejie [2 ]
Tian, Tingting [1 ]
Shi, Huidong [1 ]
Yin, Zhengwei [1 ]
He, Yueyue [3 ]
Shi, Juan [1 ]
Ding, Jianbing [1 ]
Zhang, Fengbo [1 ]
机构
[1] Xinjiang Med Univ, State Key Lab Pathogenesis Prevent & Treatment Hig, Affiliated Hosp 1, 137 Liyushan Rd, Urumqi 830011, Xinjiang, Peoples R China
[2] Xinjiang Med Univ, Reprod Med Ctr, Affiliated Hosp 1, Urumqi 830011, Xinjiang, Peoples R China
[3] Xinjiang Med Univ, Sch Basic Med Sci, Dept Immunol, Urumqi 830011, Xinjiang, Peoples R China
基金
中国国家自然科学基金;
关键词
Brucella; Multi-epitope vaccine; Epitope prediction; Molecular modeling; Molecular docking; PROTEIN-PROTEIN; CAPSULAR POLYSACCHARIDE; PREDICTION; STRATEGY; CANDIDATE; INFECTION; DOCKING; DESIGN; SERVER; HDOCK;
D O I
10.1016/j.heliyon.2024.e34721
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Brucellosis, a zoonotic disease caused by Brucella, presents a significant threat to both animal and human health. In animals, the disease can lead to infertility, miscarriage, and high fever, while in humans, symptoms may include recurrent fever, fatigue, sweating, hepatosplenomegaly, and joint and muscle pain following infection. Treatment often involves long-term antibiotic therapy, placing a substantial psychological and financial burden on patients. While vaccination is crucial for prevention, current animal vaccines have drawbacks such as residual virulence, and a safe and effective human vaccine is lacking. Hence, the development of a vaccine for brucellosis is imperative. In this study, we utilized bioinformatics methods to design a multi-epitope vaccine targeting Brucella. Targeting Heme transporter BhuA and polysaccharide export protein, we identified antigenic epitopes, including six cytotoxic T lymphocyte (CTL) dominant epitopes, six helper T lymphocyte (HTL) dominant epitopes, one conformation B cell dominant epitope, and three linear B cell dominant epitopes. By linking these epitopes with appropriate linkers and incorporating a Toll-like receptor (TLR) agonist (human beta-defensin-2) and an auxiliary peptide (Pan HLA-DR epitopes), we constructed the multi-epitope vaccine (MEV). The MEV demonstrated high antigenicity, non-toxicity, non-allergenicity, non-human homology, stability, and solubility. Molecular docking analysis and molecular dynamics simulations confirmed the interaction and stability of the MEV with receptors (MHCI, MHCII, TLR4). Codon optimization and in silico cloning validated the translation efficiency and successful expression of MEV in Escherichia coli. Immunological simulations further demonstrated the efficacy of MEV in inducing robust immune responses. In conclusion, our findings suggest that the engineered MEVs have the potential to stimulate both humoral and cellular immune responses, offering valuable insights for the future development of safe and efficient Brucella vaccines.
引用
收藏
页数:18
相关论文
共 79 条
  • [1] Gromacs: High performance molecular simulations through multi-level parallelism from laptops to supercomputers
    Abraham, Mark James
    Murtola, Teemu
    Schulz, Roland
    Páll, Szilárd
    Smith, Jeremy C.
    Hess, Berk
    Lindah, Erik
    [J]. SoftwareX, 2015, 1-2 : 19 - 25
  • [2] Design of a Novel Multi Epitope-Based Vaccine for Pandemic Coronavirus Disease (COVID-19) by Vaccinomics and Probable Prevention Strategy against Avenging Zoonotics
    Ahmad, Sajjad
    Navid, Afifa
    Farid, Rabia
    Abbas, Ghulam
    Ahmad, Faisal
    Zaman, Naila
    Parvaiz, Nousheen
    Azam, Syed Sikander
    [J]. EUROPEAN JOURNAL OF PHARMACEUTICAL SCIENCES, 2020, 151
  • [3] Proteome-Wide Mapping and Reverse Vaccinology Approaches to Design a Multi-Epitope Vaccine against Clostridium perfringens
    Aldakheel, Fahad M.
    Abrar, Amna
    Munir, Samman
    Aslam, Sehar
    Allemailem, Khaled S.
    Khurshid, Mohsin
    Ashfaq, Usman Ali
    [J]. VACCINES, 2021, 9 (10)
  • [4] Vaccinomic approach for novel multi epitopes vaccine against severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2)
    Almofti, Yassir A.
    Abd-elrahman, Khoubieb Ali
    Eltilib, Elsideeq E. M.
    [J]. BMC IMMUNOLOGY, 2021, 22 (01)
  • [5] Accurate prediction of protein structures and interactions using a three-track neural network
    Baek, Minkyung
    DiMaio, Frank
    Anishchenko, Ivan
    Dauparas, Justas
    Ovchinnikov, Sergey
    Lee, Gyu Rie
    Wang, Jue
    Cong, Qian
    Kinch, Lisa N.
    Schaeffer, R. Dustin
    Millan, Claudia
    Park, Hahnbeom
    Adams, Carson
    Glassman, Caleb R.
    DeGiovanni, Andy
    Pereira, Jose H.
    Rodrigues, Andria V.
    van Dijk, Alberdina A.
    Ebrecht, Ana C.
    Opperman, Diederik J.
    Sagmeister, Theo
    Buhlheller, Christoph
    Pavkov-Keller, Tea
    Rathinaswamy, Manoj K.
    Dalwadi, Udit
    Yip, Calvin K.
    Burke, John E.
    Garcia, K. Christopher
    Grishin, Nick V.
    Adams, Paul D.
    Read, Randy J.
    Baker, David
    [J]. SCIENCE, 2021, 373 (6557) : 871 - +
  • [6] Exoproteome and Secretome Derived Broad Spectrum Novel Drug and Vaccine Candidates in Vibrio cholerae Targeted by Piper betel Derived Compounds
    Barh, Debmalya
    Barve, Neha
    Gupta, Krishnakant
    Chandra, Sudha
    Jain, Neha
    Tiwari, Sandeep
    Leon-Sicairos, Nidia
    Canizalez-Roman, Adrian
    dos Santos, Anderson Rodrigues
    Hassan, Syed Shah
    Almeida, Sintia
    Juca Ramos, Rommel Thiago
    Carvalho de Abreu, Vinicius Augusto
    Carneiro, Adriana Ribeiro
    Soares, Siomar de Castro
    de Paula Castro, Thiago Luiz
    Miyoshi, Anderson
    Silva, Artur
    Kumar, Anil
    Misra, Amarendra Narayan
    Blum, Kenneth
    Braverman, Eric R.
    Azevedo, Vasco
    [J]. PLOS ONE, 2013, 8 (01):
  • [7] Organelle robbery:: Brucella interactions with the endoplasmic reticulum
    Celli, J
    Gorvel, JP
    [J]. CURRENT OPINION IN MICROBIOLOGY, 2004, 7 (01) : 93 - 97
  • [8] Prioritization of potential vaccine candidates and designing a multiepitope-based subunit vaccine against multidrug-resistant Salmonella Typhi str. CT18: A subtractive proteomics and immunoinformatics approach
    Chand, Yamini
    Singh, Sachidanand
    [J]. MICROBIAL PATHOGENESIS, 2021, 159
  • [9] Di Salvatore Valentina, 2023, Methods Mol Biol, V2673, P401, DOI 10.1007/978-1-0716-3239-0_27
  • [10] Doytchinova I., 2008, Open Vaccine J, V1, P22, DOI [DOI 10.2174/1875035400801010022, 10.2174/1875035400801010022]