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Detection of Protein Aggregation in Live Plasmodium Parasites
Arnau Biosca1,2,3, Inés Bouzón-Arnáiz1,2,3, Lefteris Spanos4
1Barcelona Institute for Global Health (ISGlobal), Hospital Clínic-Universitat de Barcelona, Barcelona, Spain.
Abstract:
The rapid evolution of resistance in the malaria parasite to every single drug developed against it calls for the urgent identification of new molecular targets. Using a stain specific for the detection of intracellular amyloid deposits in live cells, we have detected the presence of abundant protein aggregates in Plasmodium falciparum blood stages and female gametes cultured in vitro, in the blood stages of mice infected by Plasmodium yoelii, and in the mosquito stages of the murine malaria species Plasmodium berghei Aggregated proteins could not be detected in early rings, the parasite form that starts the intraerythrocytic cycle. A proteomics approach was used to pinpoint actual aggregating polypeptides in functional P. falciparum blood stages, which resulted in the identification of 369 proteins, with roles particularly enriched in nuclear import-related processes. Five aggregation-prone short peptides selected from this protein pool exhibited different aggregation propensity according to Thioflavin-T fluorescence measurements, and were observed to form amorphous aggregates and amyloid fibrils in transmission electron microscope images. The results presented suggest that generalized protein aggregation might have a functional role in malaria parasites. Future antimalarial strategies based on the upsetting of the pathogen's proteostasis and therefore affecting multiple gene products could represent the entry to new therapeutic approaches.
Insights
Researchers discovered widespread protein aggregates in malaria parasites, suggesting a new therapeutic target. Targeting proteostasis could lead to novel antimalarial drugs to combat drug resistance.
Area of Science:
- Parasitology
- Molecular Biology
- Drug Discovery
Background:
- Antimalarial drug resistance necessitates novel therapeutic targets.
- Protein aggregation is a poorly understood phenomenon in malaria parasites.
Purpose of the Study:
- To investigate the presence and potential role of protein aggregates in malaria parasites.
- To identify specific aggregating proteins and their functions.
Main Methods:
- Utilized a novel stain for detecting intracellular protein aggregates in various malaria parasite stages (Plasmodium falciparum, P. yoelii, P. berghei).
- Employed proteomics to identify aggregating proteins in P. falciparum blood stages.
- Analyzed aggregation propensity of selected peptides using Thioflavin-T fluorescence and transmission electron microscopy.
Main Results:
- Detected abundant protein aggregates in P. falciparum, P. yoelii, and P. berghei across different life cycle stages, excluding early rings.
- Identified 369 aggregating proteins in P. falciparum, many involved in nuclear import.
- Confirmed aggregation of selected peptides into amorphous aggregates and amyloid fibrils.
Conclusions:
- Generalized protein aggregation appears to play a functional role in malaria parasites.
- Targeting parasite proteostasis represents a promising new strategy for antimalarial drug development.
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