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Updated: May 5, 2026

A Multi-detection Assay for Malaria Transmitting Mosquitoes
Published on: February 28, 2015
Identification of novel PfEMP1 variants containing domain cassettes 11, 15 and 8 that mediate the Plasmodium
Florence E McLean1, Brian R Omondi1, Nouhoum Diallo1
1Institute of Immunology and Infection Research, School of Biological Sciences, University of Edinburgh, Edinburgh, United Kingdom.
Abstract:
Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) is a diverse family of variant surface antigens, encoded by var genes, that mediates binding of infected erythrocytes to human cells and plays a key role in parasite immune evasion and malaria pathology. The increased availability of parasite genome sequence data has revolutionised the study of PfEMP1 diversity across multiple P. falciparum isolates. However, making functional sense of genomic data relies on the ability to infer binding phenotype from var gene sequence. For P. falciparum rosetting, the binding of infected erythrocytes to uninfected erythrocytes, the analysis of var gene/PfEMP1 sequences encoding the phenotype is limited, with only eight rosette-mediating PfEMP1 variants described to date. These known rosetting PfEMP1 variants fall into two types, characterised by N-terminal domains known as "domain cassette" 11 (DC11) and DC16. Here we test the hypothesis that DC11 and DC16 are the only PfEMP1 types in the P. falciparum genome that mediate rosetting, by examining a set of thirteen recent culture-adapted Kenyan parasite lines. We first analysed the var gene/PfEMP1 repertoires of the Kenyan lines and identified an average of three DC11 or DC16 PfEMP1 variants per genotype. In vitro rosette selection of the parasite lines yielded four with a high rosette frequency, and analysis of their var gene transcription, infected erythrocyte PfEMP1 surface expression, rosette disruption and erythrocyte binding function identified four novel rosette-mediating PfEMP1 variants. Two of these were of the predicted DC11 type (one showing the dual rosetting/IgM-Fc-binding phenotype), whereas two contained DC15 (DBLα1.2-CIDRα1.5b) a PfEMP1 type not previously associated with rosetting. We also showed that a Thai parasite line expressing a DC8-like PfEMP1 binds to erythrocytes to form rosettes. Hence, these data expand current knowledge of rosetting mechanisms and emphasize that the PfEMP1 types mediating rosetting are more diverse than previously recognised.
Insights
Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) mediates malaria pathology. This study reveals novel PfEMP1 variants, including DC15 and DC8 types, that cause infected red blood cells to bind together, expanding known rosetting mechanisms.
Area of Science:
- Malariology
- Immunology
- Genomics
Background:
- Plasmodium falciparum erythrocyte membrane protein 1 (PfEMP1) is crucial for malaria immune evasion and pathology.
- Understanding PfEMP1 binding phenotypes is key to interpreting genomic data.
- Rosette formation, a specific binding phenotype, has been linked to limited PfEMP1 types (DC11, DC16).
Purpose of the Study:
- To investigate if only DC11 and DC16 PfEMP1 types mediate rosetting in Plasmodium falciparum.
- To identify novel rosette-mediating PfEMP1 variants and their associated domain cassettes.
- To expand the understanding of PfEMP1 diversity in rosetting.
Main Methods:
- Analysis of var gene/PfEMP1 repertoires in thirteen Kenyan Plasmodium falciparum lines.
- In vitro rosette selection experiments to isolate high-frequency rosetting lines.
- Assessment of var gene transcription, surface protein expression, and erythrocyte binding function.
Main Results:
- An average of three DC11 or DC16 PfEMP1 variants were identified per Kenyan parasite genotype.
- Four novel rosette-mediating PfEMP1 variants were discovered.
- Two novel variants belonged to the DC11 type, and two belonged to the previously unassociated DC15 type.
- A Thai parasite line expressing a DC8-like PfEMP1 also formed rosettes.
Conclusions:
- The PfEMP1 types mediating rosetting are more diverse than previously recognized.
- Domain cassettes DC11 and DC16 are not the only types capable of mediating rosetting.
- This study expands the known repertoire of rosette-mediating PfEMP1 variants, including DC15 and DC8 types.
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