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Published on: January 3, 2012
Plasmodium falciparum exploits CD44 as a co-receptor for erythrocyte invasion
Abstract:
The malaria parasite Plasmodium falciparum invades and replicates asexually within human erythrocytes. CD44 expressed on erythrocytes was previously identified as an important host factor for P. falciparum infection through a forward genetic screen, but little is known about its regulation or function in these cells, nor how it may be utilized by the parasite. We found that CD44 can be efficiently deleted from primary human hematopoietic stem cells using CRISPR/Cas9 genome editing, and that the efficiency of ex-vivo erythropoiesis to enucleated cultured red blood cells (cRBCs) is not impacted by lack of CD44. However, the rate of P. falciparum invasion was substantially reduced in CD44-null cRBCs relative to isogenic wild-type (WT) control cells, validating CD44 as an important host factor for this parasite. We identified two P. falciparum invasion ligands as binding partners for CD44, Erythrocyte Binding Antigen-175 (EBA-175) and EBA-140, and demonstrated that their ability to bind to human erythrocytes relies primarily on their canonical receptors-glycophorin A and glycophorin C, respectively. We further show that EBA-175 induces phosphorylation of erythrocyte cytoskeletal proteins in a CD44-dependent manner. Our findings support a model where P. falciparum exploits CD44 as a co-receptor during invasion of human erythrocytes, stimulating CD44-dependent phosphorylation of host cytoskeletal proteins that alter host cell deformability and facilitate parasite entry.
Insights
Malaria parasite Plasmodium falciparum invasion of human red blood cells is reduced when CD44 is absent. CD44 acts as a co-receptor, facilitating parasite entry by altering red blood cell structure.
Area of Science:
- Molecular biology
- Parasitology
- Cell biology
Background:
- Plasmodium falciparum infects human erythrocytes.
- CD44 on erythrocytes is a known host factor for P. falciparum infection.
- The precise role and regulation of CD44 in erythrocyte invasion are unclear.
Conclusions:
- CD44 functions as a co-receptor for P. falciparum invasion.
- CD44-mediated signaling alters erythrocyte cytoskeletal proteins, facilitating parasite entry.
- Targeting CD44 interactions could be a strategy to block malaria parasite invasion.
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