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Methods to Investigate the Regulatory Role of Small RNAs and Ribosomal Occupancy of Plasmodium falciparum
Published on: December 4, 2015
Variant proteins of the Plasmodium falciparum RIFIN family show distinct subcellular localization and developmental
Michaela Petter1, Malin Haeggström, Ayman Khattab
1Bernhard-Nocht Institute for Tropical Medicine, Bernhard-Nocht-Strasse 74, 20359, Hamburg, Germany.
Abstract:
In order to avoid immune recognition in favor of a chronic infection, the malaria parasite Plasmodium falciparum has developed means to express clonally variant antigens at the surface of the infected erythrocyte (IE). Proteins of the var and rif multicopy gene families, encoding PfEMP1 and RIFINs, respectively, have been implicated in these processes. Here, we studied members of the latter family and present data revealing different subcellular localization patterns for RIFIN variants belonging to two distinct subgroups, which have been designated A- and B-type RIFINs. While A-type RIFINs were found to be associated with the parasite and transported to the surface of infected erythrocytes via Maurer's clefts, B-type RIFINs appeared to be mostly retained inside the parasite. However, expression of both subtypes does not seem to be mutually exclusive. Moreover, both A- and B-type variants were also expressed in the merozoite, present either in the apical region (A-type) or in the cytosol (B-type). The presence of RIFINs in merozoites suggests that antigenic variation in P. falciparum is not only restricted to parasite-derived proteins at the IE surface, but the phenomenon also prevails in other life cycle stages. Interestingly, some RIFIN variants were detected only in intracellular stages and not in merozoites, pointing to differential developmental expression patterns for distinct members of this large protein family.
Insights
The malaria parasite Plasmodium falciparum uses RIFIN proteins for immune evasion. Researchers found distinct RIFIN variants localize differently within the parasite and infected cells, suggesting complex antigenic variation strategies.
Area of Science:
- Parasitology
- Immunology
- Molecular Biology
Background:
- Plasmodium falciparum evades host immunity through antigenic variation.
- The RIFIN (Repetitive Interspersed Family ofற்போது) gene family encodes surface proteins involved in immune evasion.
Purpose of the Study:
- To investigate the subcellular localization and developmental expression of RIFIN variants.
- To understand the role of RIFINs in Plasmodium falciparum's antigenic variation.
Main Methods:
- Subcellular localization studies using microscopy.
- Analysis of RIFIN expression across different parasite life stages.
Main Results:
- RIFIN variants exhibit distinct localization patterns: A-type RIFINs associate with the parasite and surface, while B-type RIFINs are retained intracellularly.
- Both A- and B-type RIFINs are found in merozoites, with specific localization depending on the variant.
- Some RIFIN variants show differential expression, being present in intracellular stages but absent in merozoites.
Conclusions:
- RIFIN proteins play a role in Plasmodium falciparum's complex antigenic variation mechanisms.
- Antigenic variation mediated by RIFINs extends beyond the infected erythrocyte surface to other parasite life stages.
- Differential expression of RIFIN variants suggests stage-specific functions in parasite development and immune evasion.
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