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Designing, Expression and Immunological Characterization of a Chimeric Protein of Mycoplasma pneumoniae
1Huadong Research Institute for Medicine and Biotechniques, Nanjing, 210002, China. liyxi2007@126.com.
Abstract:
Mycoplasma pneumoniae is thought to be the simplest and smallest cell wall-deficient bacterium which can cause chronic respiratory infections. Recently vaccination has been a possible and reliable way to reduce the spreading and infection effectively. In this study, the transmembrane proteins P116N (the N-terminal of P116), P1C (the C-terminal of P1), P30, and P116N-P1C-P30 (MP559 for short), a chimeric protein were expressed using prokaryotic expression system. The four purified recombinant proteins were synergized with freund's adjuvant and immunized New Zealand White rabbits respectively for three times. The IgG antibodies collected from immunized rabbits and mouse were analyzed by ELISA to analyze the immunogenicity and antigenicity. The results showed the four different recombinant proteins could induce strong humoral immune response. Protein MP559 could react with antisera from rabbit immunized with P1C, P30, and P116N, indicating MP559 was well designed and presented antigen epitopes of all the three antigens. Antibodies against P116N, P1C, and P30 could be stimulated by MP559 immunization, indicating MP559 has a potential to replace the three antigens as a vaccine candidate. This study laid a substantial foundation for the vaccine development of M. pneumoniae, and at the same time provided a essential strategy for the vaccine research of other pathogen.
Insights
A novel chimeric protein, MP559, derived from Mycoplasma pneumoniae transmembrane proteins, successfully induced strong immune responses in rabbits. This finding supports MP559 as a potential vaccine candidate against chronic respiratory infections.
Area of Science:
- Bacteriology
- Immunology
- Vaccine Development
Background:
- Mycoplasma pneumoniae causes chronic respiratory infections and is the simplest, smallest bacterium.
- Vaccination is a promising strategy to control M. pneumoniae infections.
Purpose of the Study:
- To express and characterize four recombinant transmembrane proteins of M. pneumoniae: P116N, P1C, P30, and a chimeric protein MP559.
- To evaluate the immunogenicity and antigenicity of these proteins as potential vaccine candidates.
Main Methods:
- Prokaryotic expression of recombinant proteins P116N, P1C, P30, and MP559.
- Immunization of New Zealand White rabbits with purified proteins and Freund's adjuvant.
- Analysis of IgG antibody responses using ELISA to assess immunogenicity and antigenicity.
Main Results:
- All four recombinant proteins elicited a strong humoral immune response.
- MP559 demonstrated cross-reactivity with antibodies against P116N, P1C, and P30, indicating it presents epitopes from all three.
- MP559 successfully stimulated antibodies against P116N, P1C, and P30.
Conclusions:
- The chimeric protein MP559 is a well-designed vaccine candidate with the potential to replace individual antigens P116N, P1C, and P30.
- This study provides a foundation for M. pneumoniae vaccine development and a strategy for other pathogen vaccine research.
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