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Published on: January 3, 2012
CD44 cross-linking promotes Plasmodium falciparum invasion
Angel K Kongsomboonvech1, Stephen W Scally2, Yann Le Guen3
1Department of Pediatrics, Stanford University School of Medicine, Stanford, CA.
Abstract:
The ability of the malaria parasite Plasmodium falciparum to invade and replicate asexually within human red blood cells (RBCs) is central to its pathogenicity, accounting for hundreds of thousands of deaths each year. RBC invasion is a multi-step process involving several host-parasite interactions, yet the host factors acting during invasion remain underexplored, largely due to the intractability of mature enucleated RBCs. The transmembrane protein CD44 was identified as a host factor for P. falciparum invasion through a forward genetic screen using genetically modified RBCs derived from primary human hematopoietic stem cells. Here, we identify an anti-CD44 monoclonal antibody, BRIC 222, that significantly promotes P. falciparum invasion, and demonstrate that its effect is mediated through CD44 cross-linking. CD44 cross-linking induced changes in the phosphorylation of RBC cytoskeletal proteins, consistent with a proposed role for CD44 as a co-receptor during invasion. CD44 cross-linking also altered the RBC membrane, increasing the accessibility of several surface proteins, including the essential invasion receptor Basigin. The parasite ligand Erythrocyte Binding Antigen-175 (EBA-175), which interacts with CD44, enhanced P. falciparum invasion and induced RBC membrane changes similarly to BRIC 222. Moreover, both BRIC 222 and EBA-175 increased binding of the PfRH5/PCRCR invasion complex to Basigin, an interaction known to be essential for invasion. We propose that CD44 cross-linking, potentially by EBA-175, serves to coordinate and enhance downstream ligand-receptor interactions and to promote signaling to the host cell cytoskeleton, making RBCs more permissive to P. falciparum invasion.
Insights
The malaria parasite Plasmodium falciparum invades human red blood cells (RBCs) via CD44. Cross-linking CD44 enhances invasion by altering RBC membranes and promoting essential ligand-receptor interactions.
Area of Science:
- Cell Biology
- Parasitology
- Immunology
Background:
- Plasmodium falciparum invasion of human red blood cells (RBCs) is critical for malaria pathogenesis.
- Host factors mediating RBC invasion are underexplored due to the difficulty of studying mature RBCs.
- CD44 was previously identified as a host factor for P. falciparum invasion.
Purpose of the Study:
- To investigate the role of CD44 in P. falciparum invasion.
- To identify mechanisms by which CD44 influences RBC permissiveness to parasite invasion.
Main Methods:
- Utilized a forward genetic screen with genetically modified human RBCs.
- Employed an anti-CD44 monoclonal antibody (BRIC 222) to induce CD44 cross-linking.
- Analyzed changes in RBC protein phosphorylation, membrane accessibility, and ligand-receptor binding.
Main Results:
- BRIC 222 significantly promoted P. falciparum invasion through CD44 cross-linking.
- CD44 cross-linking altered RBC cytoskeletal protein phosphorylation and increased surface protein accessibility, including Basigin.
- The parasite ligand Erythrocyte Binding Antigen-175 (EBA-175) mimicked BRIC 222 effects and enhanced invasion.
- Both BRIC 222 and EBA-175 increased binding of the PfRH5/PCRCR complex to Basigin.
Conclusions:
- CD44 cross-linking enhances P. falciparum invasion by modulating RBC membrane properties and facilitating key invasion complex interactions.
- EBA-175 may trigger CD44-mediated signaling pathways that increase RBC permissiveness to invasion.
- CD44 acts as a co-receptor, coordinating downstream events crucial for malaria parasite entry.

