ABSTRACT Erythrocyte invasion is an essential step in the pathogenesis of malaria. The erythrocyte binding-like (EBL) family of Plasmodium falciparum proteins recognizes glycophorins (Gp) on erythrocytes and plays a critical role in attachment during invasion. However, the molecular basis for specific receptor recognition by each parasite ligand has remained elusive, as is the case with the ligand/receptor pair P. falciparum EBA-175 (PfEBA-175)/GpA. This is due largely to difficulties in producing properly glycosylated and functional receptors. Here, we developed an expression system to produce recombinant glycosylated and functional GpA, as well as mutations and truncations. We identified the essential binding region and determinants for P...
Invasion of human erythrocytes by the malaria parasite Plasmodium falciparum utilizes multiple ligan...
Malaria parasites make specific receptor-ligand interactions to invade erythrocytes. A 175 kDa Plasm...
Malaria parasites make specific receptor-ligand interactions to invade erythrocytes. A 175 kDa Plasm...
N.D.S. and M.M.P. contributed equally to this work. ABSTRACT Erythrocyte invasion is an essential st...
SummaryErythrocyte binding antigen 175 (EBA-175) is a P. falciparum protein that binds the major gly...
SummaryErythrocyte binding antigen 175 (EBA-175) is a P. falciparum protein that binds the major gly...
ABSTRACT Plasmodium falciparum, the parasite that causes the deadliest form of malaria, has evolved ...
Erythrocyte binding antigen 175 (EBA-175) is a P. falciparum protein that binds the major glycoprote...
<div><p>The malaria parasite, <em>Plasmodium falciparum</em>, and related parasites use a variety of...
(GPC) is the receptor for PfEBP-2 (baebl, EBA-140), the newly identified erythrocyte binding ligand ...
A 175-kilodalton erythrocyte binding protein, EBA-175, of the parasite Plasmodium falciparum mediate...
The malaria parasite, Plasmodium falciparum, and related parasites use a variety of proteins with Du...
The most lethal form of malaria in humans is caused by Plasmodium falciparum. These parasites invade...
PfEBA175 has an important role in the invasion of human erythrocytes by Plasmodium falciparum and is...
Invasion of human erythrocytes by the malaria parasite Plasmodium falciparum utilizes multiple ligan...
Invasion of human erythrocytes by the malaria parasite Plasmodium falciparum utilizes multiple ligan...
Malaria parasites make specific receptor-ligand interactions to invade erythrocytes. A 175 kDa Plasm...
Malaria parasites make specific receptor-ligand interactions to invade erythrocytes. A 175 kDa Plasm...
N.D.S. and M.M.P. contributed equally to this work. ABSTRACT Erythrocyte invasion is an essential st...
SummaryErythrocyte binding antigen 175 (EBA-175) is a P. falciparum protein that binds the major gly...
SummaryErythrocyte binding antigen 175 (EBA-175) is a P. falciparum protein that binds the major gly...
ABSTRACT Plasmodium falciparum, the parasite that causes the deadliest form of malaria, has evolved ...
Erythrocyte binding antigen 175 (EBA-175) is a P. falciparum protein that binds the major glycoprote...
<div><p>The malaria parasite, <em>Plasmodium falciparum</em>, and related parasites use a variety of...
(GPC) is the receptor for PfEBP-2 (baebl, EBA-140), the newly identified erythrocyte binding ligand ...
A 175-kilodalton erythrocyte binding protein, EBA-175, of the parasite Plasmodium falciparum mediate...
The malaria parasite, Plasmodium falciparum, and related parasites use a variety of proteins with Du...
The most lethal form of malaria in humans is caused by Plasmodium falciparum. These parasites invade...
PfEBA175 has an important role in the invasion of human erythrocytes by Plasmodium falciparum and is...
Invasion of human erythrocytes by the malaria parasite Plasmodium falciparum utilizes multiple ligan...
Invasion of human erythrocytes by the malaria parasite Plasmodium falciparum utilizes multiple ligan...
Malaria parasites make specific receptor-ligand interactions to invade erythrocytes. A 175 kDa Plasm...
Malaria parasites make specific receptor-ligand interactions to invade erythrocytes. A 175 kDa Plasm...