Sequence Variation and Immunologic Cross-Reactivity among Babesia bovis Merozoite Surface Antigen 1 Proteins from Vaccine Strains and Vaccine Breakthrough Isolates
Open Access
- 1 September 2005
- journal article
- Published by American Society for Microbiology in Infection and Immunity
- Vol. 73 (9) , 5388-5394
- https://doi.org/10.1128/iai.73.9.5388-5394.2005
Abstract
The Babesia bovis merozoite surface antigen 1 (MSA-1) is an immunodominant membrane glycoprotein that is the target of invasion-blocking antibodies. While antigenic variation has been demonstrated in MSA-1 among strains from distinct geographical areas, the extent of sequence variation within a region where it is endemic and the effect of variation on immunologic cross-reactivity have not been assessed. In this study, sequencing of MSA-1 from two Australian B. bovis vaccine strains and 14 breakthrough isolates from vaccinated animals demonstrated low sequence identity in the extracellular region of the molecule, ranging from 19.8 to 46.7% between the T vaccine strain and eight T vaccine breakthrough isolates, and from 18.7 to 99% between the K vaccine strain and six K vaccine breakthrough isolates. Although MSA-1 amino acid sequence varied substantially among strains, overall predicted regions of hydrophilicity and hydrophobicity in the extracellular domain were conserved in all strains examined, suggesting a conserved functional role for MSA-1 despite sequence polymorphism. Importantly, the antigenic variation created by sequence differences resulted in a lack of immunologic cross-reactivity among outbreak strains using sera from animals infected with the B. bovis vaccine strains. Additionally, sera from cattle hyperinfected with the Mexico strain of B. bovis and shown to be clinically immune did not cross-react with MSA-1 from any other isolate tested. The results indicate that isolates of B. bovis capable of evading vaccine-induced immunity contain an msa-1 gene that is significantly different from the msa-1 of the vaccine strain, and that the difference can result in a complete lack of cross-reactivity between MSA-1 from vaccine and breakthrough strains in immunized animals.Keywords
This publication has 33 references indexed in Scilit:
- Babesia bovisMerozoite Surface Antigen 2 Proteins Are Expressed on the Merozoite and Sporozoite Surface, and Specific Antibodies Inhibit Attachment and Invasion of ErythrocytesInfection and Immunity, 2002
- Excess Polymorphisms in Genes for Membrane Proteins in Plasmodium falciparumScience, 2002
- TheBabesia bovisMerozoite Surface Antigen 2 Locus Contains Four Tandemly Arranged and Expressed Genes Encoding Immunologically Distinct ProteinsInfection and Immunity, 2002
- Molecular Basis for Variable Expression of Merozoite Surface Antigen gp45 among American Isolates ofBabesia bigeminaInfection and Immunity, 2001
- Characterization of Allelic Variation in the Babesia bovis Merozoite Surface Antigen 1 (MSA-1) Locus and Identification of a Cross-Reactive Inhibition-Sensitive MSA-1 EpitopeInfection and Immunity, 2000
- Invited review Apical organelles and host-cell invasion by ApicomplexaInternational Journal for Parasitology, 1998
- Use of helper T cells to identify potential vaccine antigens of Babesia bovisParasitology Today, 1994
- Neutralization-sensitive merozoite surface antigens of Babesia bovis encoded by members of a polymorphic gene familyMolecular and Biochemical Parasitology, 1992
- Molecular characterization of Babesia bovis merozoite surface proteins bearing epitopes immunodominant in protected cattleMolecular and Biochemical Parasitology, 1989
- Babesia bovis : Continuous Cultivation in a Microaerophilous Stationary Phase CultureScience, 1980