Shed EBA-175 mediates red blood cell clustering that enhances malaria parasite growth and enables immune evasion.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 30556808.
- Also identified by DOI 10.7554/eLife.43224 and PMC identifier 6305201.
- Licence recorded as CC0.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Erythrocyte Binding Antigen of 175 kDa (EBA-175) has a well-defined role in binding to glycophorin A (GpA) during <i>Plasmodium falciparum</i> invasion of erythrocytes. However, EBA-175 is shed post invasion and a role for this shed protein has not been defined. We show that EBA-175 shed from parasites promotes clustering of RBCs, and EBA-175-dependent clusters occur in parasite culture. Region II of EBA-175 is sufficient for clustering RBCs in a GpA-dependent manner. These clusters are capable of forming under physiological flow conditions and across a range of concentrations. EBA-175-dependent RBC clustering provides daughter merozoites ready access to uninfected RBCs enhancing parasite growth. Clustering provides a general method to protect the invasion machinery from immune recognition and disruption as exemplified by protection from neutralizing antibodies that target AMA-1 and RH5. These findings provide a mechanistic framework for the role of shed proteins in RBC clustering, immune evasion, and malaria.
Medical subject headings
- Antigens, Protozoan
- Glycophorins
- Immune Evasion
- Merozoites
- Plasmodium falciparum
- Protozoan Proteins