Identification and immunogenic potential of B cell epitopes of outer membrane protein OmpF of Aeromonas hydrophila in translational fusion with a carrier protein

被引:0
作者
Mahima Sharma
Aparna Dixit
机构
[1] Jawaharlal Nehru University,Gene Regulation Laboratory, School of Biotechnology
来源
Applied Microbiology and Biotechnology | 2015年 / 99卷
关键词
OmpF; Epitope; LTB; Fusion protein;
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摘要
Aeromonas hydrophila, a ubiquitous and virulent bacterial pathogen, affects a variety of fishes, including Labeo rohita. Existing treatment strategies comprise antibiotic therapies and attenuated bacterial strain-based vaccines. No functional subunit vaccine has been available until now. Given their key role in determining pathogenicity, outer membrane proteins have been successfully explored as potential vaccine candidates. We have devised a direct strategy for eliminating non-specific responses by selectively aiming the immune response against specific immunodominant epitopes of the outer membrane protein F (OmpF) of A. hydrophila (AhOmpF). Five putative epitopes of AhOmpF predicted in silico were genetically conjugated with heat labile enterotoxin chain B of E. coli (LTB). Recombinant fusion proteins expressed in E. coli were purified from solubilized inclusion bodies and refolded. The fusion protein retained GM1 ganglioside receptor binding activity of LTB, indicating proper folding. Four of the five fusion proteins were found to be highly immunogenic. Of the four proteins, antisera against the fusion protein (anti-rEpiF1) harboring 66–80 amino acid residues of the OmpF gave maximum cross-reactivity with the targeted rOmpF in enzyme-linked immunosorbent assay (ELISA) and was able to recognize both fusion partners—rOmpF and rLTB—in Western blot. Antibody isotyping of the antisera and cytokine array analysis of the culture supernatants of splenocytes from sensitized mice manifested a mixed Th1/Th2 immune response with a bias toward Th2. Anti-rEpiF1 antibodies were able to bind to the cell membrane of live A. hydrophila cells and agglutinate them. Our results thus suggest that the OmpF epitope (66–80) in fusion with a carrier protein is a promising vaccine candidate against A. hydrophila.
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页码:6277 / 6291
页数:14
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[21]  
Lea SR(1989)Oral vaccination. Identification of classes of proteins that provoke an immune response upon oral feeding Infect Immun 57 2136-40
[22]  
Preshaw PM(1985)Role of GM1 binding in the mucosal immunogenicity and adjuvant activity of the J Virol 55 836-839
[23]  
Taylor JJ(1995) heat-labile enterotoxin and its B subunit J Bacteriol 177 103-113
[24]  
Behera B(2006)Rational design of a multiepitope vaccine encoding T-lymphocyte epitopes for treatment of chronic hepatitis B virus infections Vet Immunol Immunopathol 112 253-63
[25]  
Bhoriwal S(2013)Universal epitopes for human CD4+ cells on tetanus and diphtheria toxins Vaccine 31 4682-4688
[26]  
Mathur P(1987)Characterization of porin and Nature 328 257-259
[27]  
Sagar S(2006) mutants of virulent strain of Clin Vaccine Immunol 13 981-990
[28]  
Singhal M(2012): Infect Immun 80 3960-3974
[29]  
Misra MC(2012) mutants are attenuated ScientificWorldJournal 23 35-73
[30]  
Bhatia B(2014)Induction of hepatitis A virus-neutralizing antibody by a virus-specific synthetic peptide J Transl Med 72 212-213