PMRT1, a Plasmodium-Specific Parasite Plasma Membrane Transporter, Is Essential for Asexual and Sexual Blood Stage

Jan Stephan Wichers1,2,3, Paolo Mesén-Ramírez2, Gwendolin Fuchs1,2,3

  • 1Centre for Structural Systems Biology, Hamburg, Germany.

Mbio
|April 11, 2022
PubMed

Insights

Six orphan membrane transporters in Plasmodium falciparum were studied. Four are essential for parasite development, highlighting potential therapeutic targets for malaria.

Area of Science:

  • Malariology
  • Molecular Parasitology
  • Membrane Biology

Background:

  • Membrane transport proteins are vital for Plasmodium falciparum's survival within host erythrocytes.
  • Many Plasmodium transporters, especially orphan ones, have unclear functions, limiting therapeutic target identification.
  • Orphan transporters, lacking homology to other lineages, are attractive targets for novel antimalarial strategies.

Purpose of the Study:

  • To investigate the subcellular localization and essentiality of six orphan membrane transporters in Plasmodium falciparum.
  • To identify essential transporters for intraerythrocytic parasite development and gametocytogenesis.
  • To evaluate Plasmodium-specific transporters as potential antimalarial drug targets.

Main Methods:

  • Endogenous tagging, targeted gene disruption, conditional knockdown, and knockout approaches were employed.
  • Subcellular localization was determined for six candidate membrane transporters.
  • Essentiality for asexual parasite growth and gametocytogenesis was assessed using reverse genetics.

Main Results:

  • Six membrane transporters were localized to various compartments including the food vacuole, apicoplast, and parasite plasma membrane.
  • Four out of the six investigated membrane transporters were found to be essential for asexual blood stage development.
  • The plasma membrane resident transporter 1 (PMRT1) was essential for gametocytogenesis and conserved within the Plasmodium genus.

Conclusions:

  • Four orphan membrane transporters are crucial for blood-stage Plasmodium falciparum development, indicating their importance.
  • These essential orphan transporters represent promising targets for the development of new antimalarial interventions.
  • Understanding the function of these unique transporters can aid in overcoming drug resistance and developing novel therapies.