Toxoplasma gondii Homologue of Plasmodium Apical Membrane Antigen 1 Is Involved in Invasion of Host Cells

Author:

Hehl Adrian B.12,Lekutis Christine1,Grigg Michael E.1,Bradley Peter J.1,Dubremetz Jean-François3,Ortega-Barria Eduardo14,Boothroyd John C.1

Affiliation:

1. Department of Microbiology and Immunology, Stanford University School of Medicine, Stanford, California 94305-51241;

2. Institute of Parasitology, University of Zürich, CH-8057 Zürich, Switzerland2;

3. EP CNRS 525, Institut de Biologie de Lille, 59021 Lille Cedex, France3; and

4. Department of Parasitology, Gorgas Memorial Health Research and Information Center, Panama 5, Panama4

Abstract

ABSTRACT Proteins with constitutive or transient localization on the surface of Apicomplexa parasites are of particular interest for their potential role in the invasion of host cells. We describe the identification and characterization of TgAMA1, the Toxoplasma gondii homolog of the Plasmodium apical membrane antigen 1 (AMA1), which has been shown to elicit a protective immune response against merozoites dependent on the correct pairing of its numerous disulfide bonds. TgAMA1 shows between 19% ( Plasmodium berghei ) and 26% ( Plasmodium yoelii ) overall identity to the different Plasmodium AMA1 homologs and has a conserved arrangement of 16 cysteine residues and a putative transmembrane domain, indicating a similar architecture. The single-copy TgAMA1 gene is interrupted by seven introns and is transcribed into an mRNA of ∼3.3 kb. The TgAMA1 protein is produced during intracellular tachyzoite replication and initially localizes to the micronemes, as determined by immunofluorescence assay and immunoelectron microscopy. Upon release of mature tachyzoites, TgAMA1 is found distributed predominantly on the apical end of the parasite surface. A ∼54-kDa cleavage product of the large ectodomain is continuously released into the medium by extracellular parasites. Mouse antiserum against recombinant TgAMA1 blocked invasion of new host cells by approximately 40%. This and our inability to produce a viable TgAMA1 knock-out mutant indicate that this phylogenetically conserved protein fulfills a key function in the invasion of host cells by extracellular T. gondii tachyzoites.

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Immunology,Microbiology,Parasitology

Reference46 articles.

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2. Immunization with recombinant AMA-1 protects mice against infection with Plasmodium chabaudi;Anders R. F.;Vaccine,1998

3. Ausubel F. M. Brent R. Kingston R. E. Moore D. D. Seidman J. G. Smith J. A. Struhl K. Current protocols in molecular biology 2. J 1994 10.2.1 10.2.35 Wiley and Sons, Inc. New York, N.Y

4. The Toxoplasma gondii rhoptry protein ROP 2 is inserted into the parasitophorous vacuole membrane, surrounding the intracellular parasite, and is exposed to the host cell cytoplasm;Beckers C. J.;J. Cell Biol.,1994

5. Review: Toxoplasma gondii cellular invasion;Bonhomme A.;Parassitologia,1992

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