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Citations to this article

Falciparum malaria parasites invade erythrocytes that lack glycophorin A and B (MkMk). Strain differences indicate receptor heterogeneity and two pathways for invasion.
T J Hadley, … , Y Okubo, L H Miller
T J Hadley, … , Y Okubo, L H Miller
Published October 1, 1987
Citation Information: J Clin Invest. 1987;80(4):1190-1193. https://doi.org/10.1172/JCI113178.
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Research Article

Falciparum malaria parasites invade erythrocytes that lack glycophorin A and B (MkMk). Strain differences indicate receptor heterogeneity and two pathways for invasion.

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Abstract

To determine the ligands on erythrocytes for invasion by Plasmodium falciparum, we tested invasion into MkMk erythrocytes that lack glycophorins A and B and enzyme-treated erythrocytes by parasites that differ in their requirement for erythrocyte sialic acid. The 7G8 strain invaded MkMk erythrocytes and neuraminidase-treated normal erythrocytes with greater than 50% the efficiency of normal erythrocytes. In contrast, the Camp strain invaded MkMk erythrocytes at 20% of control and neuraminidase-treated normal erythrocytes at only 1.8% of control. Invasion of MkMk erythrocytes by 7G8 parasites was unaffected by treatment with neuraminidase but was markedly reduced by treatment with trypsin. In contrast, invasion of MkMk cells by Camp parasites was markedly reduced by neuraminidase but was unaffected by trypsin. We conclude that the 7G8 and Camp strains differ in ligand requirements for invasion and that 7G8 requires a trypsin sensitive ligand distinct from glycophorins A and B.

Authors

T J Hadley, F W Klotz, G Pasvol, J D Haynes, M H McGinniss, Y Okubo, L H Miller

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Transfusion Medicine Reviews 1991
Plasmodium falciparum: Intragenic recombination and nonrandom associations between polymorphic domains of the precursor to the major merozoite surface antigens
DJ Conway, V Rosario, AM Oduola, LA Salako, BM Greenwood, JS McBride
Experimental Parasitology 1991
Interaction of the 140/130/110 kDa rhoptry protein complex of Plasmodium falciparum with the erythrocyte membrane and liposomes
TY Sam-Yellowe, ME Perkins
Experimental Parasitology 1991
Cell Receptors
G Seifert
1991
Evidence for a switching mechanism in the invasion of erythrocytes by Plasmodium falciparum
SA Dolan, LH Miller, TE Wellems
Journal of Clinical Investigation 1990
Primary structure of the 175K Plasmodium falciparum erythrocyte binding antigen and identification of a peptide which elicits antibodies that inhibit malaria merozoite invasion
BK Sim, PA Orlandi, JD Haynes, FW Klotz, JM Carter, D Camus, ME Zegans, JD Chulay
The Journal of Cell Biology 1990
Characterization of the 175-kilodalton erythrocyte binding antigen of Plasmodium falciparum
PA Orlandi, BK Sim, JD Chulay, JD Haynes
Molecular and Biochemical Parasitology 1990
Progress in the development of a vaccine against Plasmodium falciparum malaria
CA Bockoff
Clinical Microbiology Newsletter 1990
In vitro evaluation of the role of the Duffy blood group in erythrocyte invasion by Plasmodium vivax
JW Barnwell, ME Nichols, P Rubinstein
Journal of Experimental Medicine 1989
Erythrocyte invasion by the malarial merozoite: Recent advances
ME Perkins
Experimental Parasitology 1989
Red cell deformability and invasion by malaria parasites
G Pasvol, RJ Wilson
Parasitology Today 1989
Parasitic Protozoa and Helminths: Biological and Immunological Challenges
AA Mahmoud
Science 1989
Malaria parasite invasion: Interactions with the red cell membrane
GH Mitchell, LH Bannister, RE Sinden
Critical Reviews in Oncology/Hematology 1988
Receptor-like specificity of a Plasmodium knowlesi malarial protein that binds to Duffy antigen ligands on erythrocytes
JD Haynes, JP Dalton, FW Klotz, MH McGinniss, TJ Hadley, DE Hudson, LH Miller
Journal of Experimental Medicine 1988
Effective vaccine for humans?
LH Miller
Nature 1988
New Comprehensive Biochemistry
S Yamamoto
New Comprehensive Biochemistry 1983

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