In-silico design and evaluation of an epitope-based serotype-independent promising vaccine candidate for highly cross-reactive regions of pneumococcal surface protein A

被引:10
|
作者
Afshari, Elnaz [1 ]
Cohan, Reza Ahangari [2 ]
Sotoodehnejadnematalahi, Fattah [1 ]
Mousavi, Seyed Fazlollah [3 ]
机构
[1] Islamic Azad Univ, Sci & Res Branch, Dept Biol, Tehran, Iran
[2] Pasteur Inst Iran, Dept Nanobiotechnol, New Technol Res Grp, Tehran, Iran
[3] Pasteur Inst Iran, Dept Microbiol, 69 Pasteur Ave, Tehran 13164, Iran
关键词
Clade-defining region; Cross-reactivity; PspA; Serotype-independent vaccine; Streptococcus pneumoniae; Immunoinformatics; PROLINE-RICH REGION; STREPTOCOCCUS-PNEUMONIAE; PSPA FRAGMENTS; PEPTIDE BINDING; FUSION PROTEIN; PREDICTION; PROTECTION; COMPLEX; IMMUNOINFORMATICS; ENHANCEMENT;
D O I
10.1186/s12967-022-03864-z
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Background: The pathogenicity of pneumococcus with high morbidity, mortality, and multi-drug resistance patterns has been increasing. The limited coverage of the licensed polysaccharide-based vaccines and the replacement of the non-vaccine serotypes are the main reasons for producing a successful serotype-independent vaccine. Pneumococcal surface protein A (PspA) is an extremely important virulence factor and an interesting candidate for conserved protein-based pneumococcal vaccine classified into two prominent families containing five clades. PspA family-elicited immunity is clade-dependent, and the level of the PspA cross-reactivity is restricted to the same family.Methods: To cover and overcome the clade-dependent immunity of the PspAs in this study, we designed and tested a PspA(1-5c+p) vaccine candidate composed of the highest immunodominant coverage of B- and T-cell epitope truncated domain of each clade focusing on two cross-reactive B and C regions of the PspAs. The antigenicity, toxicity, physicochemical properties, 3D structure prediction, stability and flexibility of the designed protein using molecular dynamic (MD) simulation, molecular docking of the construct withHLADRB1*(01:01) and human lactoferrin N-lop, and immune simulation were assessed using immunoinformatics tools. In the experimental section, after intraperitoneal immunization of the mice with Alum adjuvanted recombinant PspA(1-5c+p), we evaluated the immune response, cross-reactivity, and functionality of the Anti-PspA(1-5c+p) antibody using ELISA, Opsonophagocytic killing activity, and serum bactericidal assay.Results: For the first time, this work suggested a novel PspA-based vaccine candidate using immunoinformatics tools. The designed PspA(1-5c+p) protein is predicted to be highly antigenic, non-toxic, soluble, stable with low flexibility in MD simulation, and able to stimulate both humoral and cellular immune responses. The designed protein also could interact strongly with HLADRB1*(01:01) and human lactoferrin N-lop in the docking study. Our immunoinformatics predictions were validated using experimental data. Results showed that the anti-PspA(1-5c+p) IgG not only had a high titer with strong and same cross-reactivity coverage against all pneumococcal serotypes used but also had high and effective bioactivity for pneumococcal clearance using complement system and phagocytic cells.Conclusion: Our findings elucidated the potential application of the PspA(1-5c+p) vaccine candidate as a serotype-independent pneumococcal vaccine with a strong cross-reactivity feature. Further in-vitro and in-vivo investigations against other PspA clades should be performed to confirm the full protection of the PspA(1-5c+p) vaccine candidate.
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页数:29
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