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High Yield Purification of Plasmodium falciparum Merozoites For Use in Opsonizing Antibody Assays
Published on: July 17, 2014
Plasmodium falciparum merozoite surface protein 1 (MSP-1)-MSP-3 chimeric protein: immunogenicity determined with
Suman Mazumdar1, Paushali Mukherjee, Syed Shams Yazdani
1International Centre for Genetic Engineering and Biotechnology, Aruna Asaf Ali Marg, New Delhi 110067, India.
Abstract:
A chimeric gene, MSP-Fu(24), was constructed by genetically coupling immunodominant, conserved regions of the two leading malaria vaccine candidates, Plasmodium falciparum merozoite surface protein 1 (C-terminal 19-kDa region [PfMSP-1(19)]) and merozoite surface protein 3 (11-kDa conserved region [PfMSP-3(11)]). The recombinant MSP-Fu(24) protein was produced in Escherichia coli cells and purified to homogeneity by a two-step purification process with a yield of approximately 30 mg/liter. Analyses of conformational properties of MSP-Fu(24) using PfMSP-1(19)-specific monoclonal antibody showed that the conformational epitopes of PfMSP-1(19) that may be critical for the generation of the antiparasitic immune response remained intact in the fusion protein. Recombinant MSP-Fu(24) was highly immunogenic in mice and in rabbits when formulated with two different human-compatible adjuvants and induced an immune response against both PfMSP-1(19) and PfMSP-3(11). Purified anti-MSP-Fu(24) antibodies showed invasion inhibition of P. falciparum 3D7 and FCR parasites, and this effect was found to be dependent on antibodies specific for the PfMSP-1(19) component. The protective potential of MSP-Fu(24) was demonstrated by in vitro parasite growth inhibition using an antibody-dependent cell inhibition (ADCI) assay with anti-MSP-Fu(24) antibodies. Overall, the antiparasitic activity was mediated by a combination of growth-inhibitory antibodies generated by both the PfMSP-1(19) and PfMSP-3(11) components of the MSP-Fu(24) protein. The antiparasitic activities elicited by anti-MSP-Fu(24) antibodies were comparable to those elicited by antibodies generated with immunization with a physical mixture of two component antigens, PfMSP-1(19) and PfMSP-3(11). The fusion protein induces a protective immune response with human-compatible adjuvants and may form a part of a multicomponent malaria vaccine.
Insights
A novel malaria vaccine candidate, MSP-Fu(24), combines key Plasmodium falciparum antigens, PfMSP-1(19) and PfMSP-3(11). This fusion protein elicits a protective immune response, showing potential for a multicomponent malaria vaccine.
Area of Science:
- Immunology
- Parasitology
- Vaccine Development
Background:
- Malaria remains a significant global health challenge, necessitating the development of effective vaccines.
- Plasmodium falciparum merozoite surface protein 1 (PfMSP-1) and merozoite surface protein 3 (PfMSP-3) are leading malaria vaccine candidates.
Purpose of the Study:
- To construct and characterize a chimeric fusion protein, MSP-Fu(24), combining conserved regions of PfMSP-1(19) and PfMSP-3(11).
- To evaluate the immunogenicity, antibody response, and in vitro antiparasitic activity of the recombinant MSP-Fu(24) protein.
Main Methods:
- Genetic construction of the MSP-Fu(24) chimeric gene.
- Production and purification of recombinant MSP-Fu(24) protein in Escherichia coli.
- Immunization of mice and rabbits with MSP-Fu(24) formulated with human-compatible adjuvants.
- Analysis of antibody responses, including invasion inhibition and antibody-dependent cell inhibition (ADCI) assays.
Main Results:
- The recombinant MSP-Fu(24) protein retained conformational epitopes of PfMSP-1(19).
- MSP-Fu(24) was immunogenic, inducing responses against both PfMSP-1(19) and PfMSP-3(11).
- Anti-MSP-Fu(24) antibodies demonstrated invasion inhibition and parasite growth inhibition (ADCI), with activity linked to PfMSP-1(19) specificity.
Conclusions:
- The MSP-Fu(24) fusion protein elicits a protective immune response against Plasmodium falciparum.
- The antiparasitic activity is mediated by antibodies targeting both PfMSP-1(19) and PfMSP-3(11) components.
- MSP-Fu(24) shows promise as a component of a multicomponent malaria vaccine.
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