Prediction of T cell epitopes of Brucella abortus and evaluation of their protective role in mice

被引:10
作者
Afley, Prachiti [1 ]
Dohre, Sudhir K. [1 ]
Prasad, G. B. K. S. [2 ]
Kumar, Subodh [1 ]
机构
[1] Def Res & Dev Estab, Gwalior 474002, Madhya Pradesh, India
[2] Jiwaji Univ, Sch Studies Biochem, Gwalior 474002, Madhya Pradesh, India
关键词
Brucella abortus; Epitope; DNA vaccine; Immunoinformatics; PLG microparticles; WILD-TYPE CHALLENGE; BALB/C MICE; DNA VACCINE; B-CELL; CYTOTOXIC LYMPHOCYTES; CONFERS PROTECTION; INTERFERON-GAMMA; PEPTIDE VACCINES; IMMUNE-RESPONSE; MELITENSIS; 16M;
D O I
10.1007/s00253-015-6787-7
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Brucellae are Gram-negative intracellular bacteria that cause an important zoonotic disease called brucellosis. The animal vaccines are available but have disadvantage of causing abortions in a proportion of pregnant animals. The animal vaccines are also pathogenic to humans. Recent trend in vaccine design has shifted to epitope-based vaccines that are safe and specific. In this study, efforts were made to identify MHC-I- and MHC-II-restricted T cell epitopes of Brucella abortus and evaluate their vaccine potential in mice. The peptides were designed using online available immunoinformatics tools, and five MHC-I- and one MHC-II-restricted T cell peptides were selected on the basis of their ability to produce interferon gamma (IFN-gamma) in in vivo studies. The selected peptides were co-administered with poly dl-lactide-co-glycolide (PLG) microparticles and evaluated for immunogenicity and protection in BALB/c mice. Mice immunized with peptides either entrapped in PLG microparticles (EPLG-Pep) or adsorbed on PLG particles (APLG-Pep) showed significantly higher splenocyte proliferation and IFN-gamma generation to all selected peptides than the mice immunized with corresponding irrelevant peptides formulated PLG microparticles or phosphate-buffered saline (PBS). A significant protection compared to PBS control was also observed in EPLG-Pep and APLG-Pep groups. A plasmid DNA vaccine construct (pVaxPep) for peptides encoding DNA sequences was generated and injected to mice by in vivo electroporation. Significant protection was observed (1.66 protection units) when compared with PBS and empty vector control group animals. Overall, the MHC-I and MHC-II peptides identified in this study are immunogenic and protective in mouse model and support the feasibility of peptide-based vaccine for brucellosis.
引用
收藏
页码:7625 / 7637
页数:13
相关论文
共 47 条
[1]   Protection of BALB/c mice against Brucella abortus 544 challenge by vaccination with bacterioferritin or P39 recombinant proteins with CpG oligodeoxynucleotides as adjuvant [J].
Al-Mariri, A ;
Tibor, A ;
Mertens, P ;
De Bolle, X ;
Michel, P ;
Godefroid, J ;
Walravens, K ;
Letesson, JJ .
INFECTION AND IMMUNITY, 2001, 69 (08) :4816-4822
[2]   The Brucella abortus S19 ΔvjbR Live Vaccine Candidate Is Safer than S19 and Confers Protection against Wild-Type Challenge in BALB/c Mice When Delivered in a Sustained-Release Vehicle [J].
Arenas-Gamboa, A. M. ;
Ficht, T. A. ;
Kahl-McDonagh, M. M. ;
Gomez, G. ;
Rice-Ficht, A. C. .
INFECTION AND IMMUNITY, 2009, 77 (02) :877-884
[3]   Challenges in the development of effective peptide vaccines for cancer [J].
Buteau, C ;
Markovic, SN ;
Celis, E .
MAYO CLINIC PROCEEDINGS, 2002, 77 (04) :339-349
[4]   Identification of Brucella melitensis vaccine strain Rev.1 by PCR-RFLP based on a mutation in the rpsL gene [J].
Cloeckaert, A ;
Grayon, M ;
Grépinet, O .
VACCINE, 2002, 20 (19-20) :2546-2550
[5]   The identification of two protective DNA vaccines from a panel of five plasmid constructs encoding Brucella melitensis 16M genes [J].
Commander, Nicola J. ;
Spencer, Stephen A. ;
Wren, Brendan W. ;
MacMillan, Alastair P. .
VACCINE, 2007, 25 (01) :43-54
[6]   Proteomic analysis of Brucella abortus cell envelope and identification of immunogenic candidate proteins for vaccine development [J].
Connolly, Joseph P. ;
Comerci, Diego ;
Alefantis, Timothy G. ;
Walzl, Alexander ;
Quan, Marian ;
Chafin, Ryan ;
Grewal, Paul ;
Mujer, Cesar V. ;
Ugalde, Rodolfo A. ;
DelVecchio, Vito G. .
PROTEOMICS, 2006, 6 (13) :3767-3780
[7]   Brucellosis: An overview [J].
Corbel, MJ .
EMERGING INFECTIOUS DISEASES, 1997, 3 (02) :213-221
[8]   Making vaccines "on demand" A potential solution for emerging pathogens and biodefense? [J].
De Groot, Anne S. ;
Einck, Leo ;
Moise, Leonard ;
Chambers, Michael ;
Ballantyne, John ;
Malone, Robert W. ;
Ardito, Matthew ;
Martin, William .
HUMAN VACCINES & IMMUNOTHERAPEUTICS, 2013, 9 (09) :1877-1884
[9]   Vaccination with Brucella recombinant DnaK and SurA proteins induces protection against Brucella abortus infection in BALB/c mice [J].
Delpino, Maria Victoria ;
Estein, Silvia Marcela ;
Fossati, Carlos Alberto ;
Baldi, Pablo Cesar ;
Cassataro, Juliana .
VACCINE, 2007, 25 (37-38) :6721-6729
[10]   Discordant Brucella melitensis Antigens Yield Cognate CD8+ T Cells In Vivo [J].
Durward, Marina A. ;
Harms, Jerome ;
Magnani, Diogo M. ;
Eskra, Linda ;
Splitter, Gary A. .
INFECTION AND IMMUNITY, 2010, 78 (01) :168-176