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Phosphorylation of protein 4.1 in Plasmodium falciparum-infected human red blood cells
A H Chishti1, G J Maalouf, S Marfatia
1Department of Biomedical Research, St. Elizabeth's Hospital, Tufts University School of Medicine, Boston, MA 02135.
Abstract:
The composition of the erythrocyte plasma membrane is extensively modified during the intracellular growth of the malaria parasite Plasmodium falciparum. It has been previously shown that an 80-kD phosphoprotein is associated with the plasma membrane of human red blood cells (RBCs) infected with trophozoite/schizont stage malaria parasites. However, the identity of this 80-kD phosphoprotein is controversial. One line of evidence suggests that this protein is a phosphorylated form of RBC protein 4.1 and that it forms a tight complex with the mature parasite-infected erythrocyte surface antigen. In contrast, evidence from another group indicates that the 80-kD protein is derived from the intracellular malaria parasite. To resolve whether the 80-kD protein is indeed RBC protein 4.1, we made use of RBCs obtained from a patient with homozygous 4.1(-) negative hereditary elliptocytosis. RBCs from this patient are completely devoid of protein 4.1. We report here that this lack of protein 4.1 is correlated with the absence of phosphorylation of the 80-kD protein in parasite-infected RBCs, a finding that provides conclusive evidence that the 80-kD phosphoprotein is indeed protein 4.1. In addition, we also identify and partially characterize a casein kinase that phosphorylates protein 4.1 in P falciparum-infected human RBCs. Based on these results, we suggest that the maturation of malaria parasites in human RBCs is accompanied by the phosphorylation of protein 4.1. This phosphorylation of RBC protein 4.1 may provide a mechanism by which the intracellular malaria parasite alters the mechanical properties of the host plasma membrane and modulates parasite growth and survival in vivo.
Insights
The malaria parasite Plasmodium falciparum phosphorylates human red blood cell (RBC) protein 4.1 during infection. This phosphorylation, mediated by a casein kinase, alters RBC membrane properties, aiding parasite survival.
Area of Science:
- Cell Biology
- Parasitology
- Biochemistry
Background:
- The malaria parasite Plasmodium falciparum extensively modifies the human red blood cell (RBC) plasma membrane during its intracellular growth.
- An 80-kD phosphoprotein associated with infected RBC membranes has a controversial identity: either a phosphorylated RBC protein 4.1 or a parasite-derived protein.
Purpose of the Study:
- To definitively identify the 80-kD phosphoprotein found in malaria-infected RBCs.
- To investigate the role of RBC protein 4.1 in malaria parasite infection.
Main Methods:
- Utilized RBCs from a patient with hereditary elliptocytosis, which completely lack protein 4.1.
- Correlated the absence of protein 4.1 with the absence of 80-kD phosphoprotein phosphorylation in infected RBCs.
- Identified and characterized a casein kinase responsible for phosphorylating protein 4.1 in infected RBCs.
Main Results:
- Confirmed that the 80-kD phosphoprotein is indeed RBC protein 4.1.
- Demonstrated that protein 4.1 is phosphorylated in P. falciparum-infected RBCs.
- Identified a specific casein kinase involved in this phosphorylation process.
Conclusions:
- The intracellular maturation of malaria parasites is associated with the phosphorylation of RBC protein 4.1.
- Phosphorylation of protein 4.1 may alter host RBC membrane mechanics, influencing parasite growth and survival.
- This study resolves the identity of the 80-kD phosphoprotein and implicates protein 4.1 modification in malaria pathogenesis.