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.

Plos Pathogens
|October 17, 2006
PubMed

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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