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Published on: May 16, 2013
Two Plasmodium rhomboid proteases preferentially cleave different adhesins implicated in all invasive stages of
Rosanna P Baker1, Ruvini Wijetilaka, Sinisa Urban
1Department of Molecular Biology and Genetics, Johns Hopkins University School of Medicine, Baltimore, Maryland, United States of America.
Abstract:
Invasion of host cells by the malaria pathogen Plasmodium relies on parasite transmembrane adhesins that engage host-cell receptors. Adhesins must be released by cleavage before the parasite can enter the cell, but the processing enzymes have remained elusive. Recent work indicates that the Toxoplasma rhomboid intramembrane protease TgROM5 catalyzes this essential cleavage. However, Plasmodium does not encode a direct TgROM5 homolog. We examined processing of the 14 Plasmodium falciparum adhesins currently thought to be involved in invasion by both model and Plasmodium rhomboid proteases in a heterologous assay. While most adhesins contain aromatic transmembrane residues and could not be cleaved by nonparasite rhomboid proteins, including Drosophila Rhomboid-1, Plasmodium falciparum rhomboid protein (PfROM)4 (PFE0340c) was able to process these adhesins efficiently and displayed novel substrate specificity. Conversely, PfROM1 (PF11_0150) shared specificity with rhomboid proteases from other organisms and was the only PfROM able to cleave apical membrane antigen 1 (AMA1). PfROM 1 and/or 4 was thus able to cleave diverse adhesins including TRAP, CTRP, MTRAP, PFF0800c, EBA-175, BAEBL, JESEBL, MAEBL, AMA1, Rh1, Rh2a, Rh2b, and Rh4, but not PTRAMP, and cleavage relied on the adhesin transmembrane domains. Swapping transmembrane regions between BAEBL and AMA1 switched the relative preferences of PfROMs 1 and 4 for these two substrates. Our analysis indicates that PfROMs 1 and 4 function with different substrate specificities that together constitute the specificity of TgROM5 to cleave diverse adhesins. This is the first enzymatic analysis of Plasmodium rhomboid proteases and suggests an involvement of PfROMs in all invasive stages of the malaria lifecycle, in both the vertebrate host and the mosquito vector.
Insights
Plasmodium falciparum rhomboid proteases (PfROMs) 1 and 4 cleave essential adhesins for malaria parasite invasion. This study identifies their specificities, crucial for understanding parasite entry into host cells.
Area of Science:
- Molecular Parasitology
- Protease Biochemistry
- Malaria Pathogenesis
Background:
- Malaria parasite invasion requires cleavage of adhesins by proteases.
- The specific rhomboid proteases responsible in Plasmodium falciparum were previously unknown.
- Toxoplasma gondii rhomboid protease TgROM5 is known to process adhesins.
Purpose of the Study:
- To enzymatically characterize Plasmodium falciparum rhomboid proteases (PfROMs) 1 and 4.
- To determine the substrate specificities of PfROMs for invasion-related adhesins.
- To elucidate the role of PfROMs in malaria parasite host cell invasion.
Main Methods:
- Heterologous expression and in vitro cleavage assays of Plasmodium falciparum adhesins using Plasmodium rhomboid proteases.
- Analysis of substrate specificity based on adhesin transmembrane domains.
- Domain swapping experiments between adhesins to investigate protease recognition.
Main Results:
- PfROM4 efficiently cleaved diverse adhesins, while PfROM1 showed distinct specificity, uniquely cleaving AMA1.
- Cleavage by PfROMs was dependent on adhesin transmembrane domains, with swapping domains altering protease preference.
- PfROMs 1 and 4 exhibit complementary specificities, collectively matching the known function of TgROM5.
Conclusions:
- PfROMs 1 and 4 are key enzymes processing multiple Plasmodium falciparum adhesins essential for host cell invasion.
- These proteases possess distinct substrate specificities that are critical for the malaria parasite's lifecycle.
- This work provides the first enzymatic characterization of Plasmodium rhomboid proteases, implicating them in all invasive stages.
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