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Designing of novel chimeric PvpA-pMGA protein of Mycoplasma gallisepticum, applicable for indirect ELISA
Farzaneh Pourkarimi Fatideh1, Majid Esmaelizad2, Mohammad Kargar1
1Department of Microbiology, Jahrom Branch, Islamic Azad University, Jahrom, Iran.
Background:
Mycoplasma gallisepticum is the primary agent of chronic respiratory disease in chickens creating important economic losses in poultry industry. pMGA and pvpA genes encode major surface proteins in M. gallisepticum containing pathogenic, antigenic, and immune evasion characteristics. The objective of the present study was to design, express, and purify the recombinant chimeric PvpA-pMGA protein from M.gallisepticum for using in serological diagnostic test.
Methods:
Antigenic regions of PvpA and pMGA proteins were predicted for designing chimeric pvpA-pMGA gene construct. The codon optimized sequence was cloned into the expression vector pET32a+ and transformed into the Escherichia coli strain BL21 (DE3). The pET32a-PvpA-pMGA recombinant plasmid was expressed and confirmed by SDS-PAGE and immunoblotting. PvpA-pMGA recombinant protein (20μg and 50μg), ts-11 vaccine strain, and S6 strain that formulated by montanide adjuvant and two control groups (PBS and adjuvant) were injected subcutaneously to six groups of chickens.
Results:
High yield of protein was purified amount 138 mg/L by affinity batch formation method. Indirect ELISA showed the levels of antibodies in rPvpA-pMGA was significantly higher than ts-11 and S6 groups (p<0.05). The results indicated that antigen-specific response was successfully elicited by the rpMGA-PvpA in chickens. The result of the ELISA with sera collected from ts-11 and S6 groups showed that indirect PvpA-pMGA-ELISA is appropriate candidate for detection of specific antibodies against M. gallisepticum with 100% sensitivity and specificity.
Conclusions:
The rPvpA-pMGA is a highly candidate immunogenic protein which induced high amount of humoral immune response. Novel rPvpA-pMGA protein could be useful for evaluation of antibody level in vaccinated poultry flocks.
Insights
A novel recombinant chimeric protein, PvpA-pMGA, was developed to detect Mycoplasma gallisepticum antibodies in chickens. This protein elicits a strong immune response and shows high diagnostic accuracy for identifying specific antibodies in vaccinated poultry.
Area of Science:
- Veterinary Immunology
- Molecular Biology
- Poultry Health
Background:
- Mycoplasma gallisepticum causes chronic respiratory disease in chickens, leading to significant economic losses.
- The pMGA and pvpA genes encode key surface proteins involved in M. gallisepticum pathogenicity and immune evasion.
Purpose of the Study:
- To design, express, and purify a recombinant chimeric PvpA-pMGA protein from M. gallisepticum.
- To evaluate the utility of this protein in a serological diagnostic test for M. gallisepticum.
Main Methods:
- Chimeric pvpA-pMGA gene construct designed using predicted antigenic regions.
- Codon-optimized sequence cloned into pET32a+ vector and expressed in E. coli BL21 (DE3).
- Recombinant protein purified and characterized; chickens immunized to assess immunogenicity and diagnostic potential.
Main Results:
- High yield (138 mg/L) of purified recombinant PvpA-pMGA protein achieved.
- Chickens immunized with rPvpA-pMGA showed significantly higher antibody levels compared to vaccine strains (p<0.05).
- Indirect PvpA-pMGA ELISA demonstrated 100% sensitivity and specificity for detecting M. gallisepticum antibodies.
Conclusions:
- The recombinant PvpA-pMGA protein is a highly immunogenic candidate.
- It effectively induces a robust humoral immune response in chickens.
- This novel protein is suitable for evaluating antibody levels in vaccinated poultry flocks.
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