Immunization with the MAEBL M2 Domain Protects against Lethal Plasmodium yoelii Infection

Author:

Leite Juliana A.1,Bargieri Daniel Y.2,Carvalho Bruna O.13,Albrecht Letusa14,Lopes Stefanie C. P.15,Kayano Ana Carolina A. V.1,Farias Alessandro S.1,Chia Wan Ni6,Claser Carla6,Malleret Benoit6,Russell Bruce6,Castiñeiras Catarina1,Santos Leonilda M. B.1,Brocchi Marcelo1,Wunderlich Gerhard2,Soares Irene S.7,Rodrigues Mauricio M.8,Rénia Laurent6,Costa Fabio T. M.1

Affiliation:

1. Department of Genetics, Evolution and Bioagents, University of Campinas—UNICAMP, Campinas, SP, Brazil

2. Department of Parasitology, University of São Paulo—USP, São Paulo, SP, Brazil

3. Instituto Oswaldo Cruz, Fundação Oswaldo Cruz—FIOCRUZ, Rio de Janeiro, RJ, Brazil

4. Instituto Carlos Chagas, Fundação Oswaldo Cruz—FIOCRUZ, Curitiba, PR, Brazil

5. Instituto Leônidas e Maria Deane, Fundação Oswaldo Cruz—FIOCRUZ, Manaus, AM, Brazil

6. Singapore Immunology Network, Agency for Science, Technology and Research (A*STAR), Singapore

7. Department of Clinical and Toxicological Analysis, Pharmaceutical Sciences, University of São Paulo—USP, São Paulo, SP, Brazil

8. Center for Cellular and Molecular Therapy—CTCMol, Federal University of São Paulo, São Paulo, SP, Brazil

Abstract

ABSTRACT Malaria remains a world-threatening disease largely because of the lack of a long-lasting and fully effective vaccine. MAEBL is a type 1 transmembrane molecule with a chimeric cysteine-rich ectodomain homologous to regions of the Duffy binding-like erythrocyte binding protein and apical membrane antigen 1 (AMA1) antigens. Although MAEBL does not appear to be essential for the survival of blood-stage forms, ectodomains M1 and M2, homologous to AMA1, seem to be involved in parasite attachment to erythrocytes, especially M2. MAEBL is necessary for sporozoite infection of mosquito salivary glands and is expressed in liver stages. Here, the Plasmodium yoelii MAEBL-M2 domain was expressed in a prokaryotic vector. C57BL/6J mice were immunized with doses of P. yoelii recombinant protein rPyM2-MAEBL. High levels of antibodies, with balanced IgG1 and IgG2c subclasses, were achieved. rPyM2-MAEBL antisera were capable of recognizing the native antigen. Anti-MAEBL antibodies recognized different MAEBL fragments expressed in CHO cells, showing stronger IgM and IgG responses to the M2 domain and repeat region, respectively. After a challenge with P. yoelii YM (lethal strain)-infected erythrocytes (IE), up to 90% of the immunized animals survived and a reduction of parasitemia was observed. Moreover, splenocytes harvested from immunized animals proliferated in a dose-dependent manner in the presence of rPyM2-MAEBL. Protection was highly dependent on CD4 + , but not CD8 + , T cells toward Th1. rPyM2-MAEBL antisera were also able to significantly inhibit parasite development, as observed in ex vivo P. yoelii erythrocyte invasion assays. Collectively, these findings support the use of MAEBL as a vaccine candidate and open perspectives to understand the mechanisms involved in protection.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Immunology,Microbiology,Parasitology

Reference47 articles.

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