Polymorphism in a Plasmodium falciparum Erythrocyte-binding Ligand Changes Its Receptor Specificity
Open Access
- 25 November 2002
- journal article
- Published by Rockefeller University Press in The Journal of Experimental Medicine
- Vol. 196 (11) , 1523-1528
- https://doi.org/10.1084/jem.20020750
Abstract
Recognition of human erythrocytes by Plasmodium species depends in part on Region II of the Duffy binding-like family of parasite ligands, which includes BA erythrocyte binding ligand (BAEBL) of P. falciparum. In previous studies of BAEBL from two clones, Dd2/Nm from Vietnam and E12 from Papua New Guinea (PNG), it was found that BAEBL bound different erythrocyte receptors. Because of variation in binding specificity, we studied the sequence and erythrocyte binding specificity of Region II of BAEBL in P. falciparum clones from different parts of the world. We observed five nucleotide substitutions leading to five amino acid changes and five polymorphisms in Region II of BAEBL in parasites from both PNG and other parts of the world. We expressed four of the polymorphisms on COS cells and determined their binding to enzyme-treated erythrocytes and to Gerbich-negative erythrocytes. We also performed erythrocyte-binding assay using the native protein from radiolabeled culture supernatant. Both assays demonstrated that each of the four polymorphisms in the parasite ligand, BAEBL, bound to a different receptor on erythrocytes. These results suggest that P. falciparum has evolved multiple invasion pathways dependent on polymorphisms in the BAEBL ligand.Keywords
This publication has 29 references indexed in Scilit:
- The pathogenic basis of malariaNature, 2002
- Stage-Specific Transcription of Distinct Repertoires of a Multigene Family During Plasmodium Life CycleScience, 2002
- Conservation of structure and function of the erythrocyte-binding domain of Plasmodium falciparum EBA-1751Note: Nucleotide sequence data reported in this paper are available in the Genbank™ data base under the following accession numbers: 105 (U27384); 106/10 (U27385); 7G8 (UU27386); DIV30 (U27388); FCB (U27389); FVO (U27390); HB3 (U27391); ItDR (U27392); T2/C6 (U27394); Thai436 (U27395); VI-S (U27396); W2 (U27397), 3D7 (NIH) U78724; 3D7 (NAVY) U78725.1Molecular and Biochemical Parasitology, 1997
- Plasmodium vivax: Merozoites, invasion of reticulocytes and considerations for malaria vaccine developmentParasitology Today, 1996
- Diversity of the vaccine candidate AMA-1 of Plasmodium falciparumMolecular and Biochemical Parasitology, 1996
- The large diverse gene family var encodes proteins involved in cytoadherence and antigenic variation of plasmodium falciparum-infected erythrocytesPublished by Elsevier ,1995
- Identification of the erythrocyte binding domains of Plasmodium vivax and Plasmodium knowlesi proteins involved in erythrocyte invasion.The Journal of Experimental Medicine, 1994
- Receptor and Ligand Domains for Invasion of Erythrocytes by Plasmodium falciparumScience, 1994
- A reticulocyte-binding protein complex of plasmodium vivax merozoitesCell, 1992
- Evidence for a switching mechanism in the invasion of erythrocytes by Plasmodium falciparum.Journal of Clinical Investigation, 1990