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Feeling at home from arrival to departure: protein export and host cell remodelling during Plasmodium liver stage and
Alyssa Ingmundson1, Pietro Alano, Kai Matuschewski
1Max Planck Institute for Infection Biology, Parasitology Unit, 10117, Berlin, Germany.
Abstract:
Obligate intracellular pathogens actively remodel their host cells to boost propagation, survival, and persistence. Plasmodium falciparum, the causative agent of the most severe form of malaria, assembles a complex secretory system in erythrocytes. Export of parasite factors to the erythrocyte membrane is essential for parasite sequestration from the blood circulation and a major factor for clinical complications in falciparum malaria. Historic and recent molecular reports show that host cell remodelling is not exclusive to P. falciparum and that parasite-induced intra-erythrocytic membrane structures and protein export occur in several Plasmodia. Comparative analyses of P. falciparum asexual and sexual blood stages and imaging of liver stages from transgenic murine Plasmodium species show that protein export occurs in all intracellular phases from liver infection to sexual differentiation, indicating that mammalian Plasmodium species evolved efficient strategies to renovate erythrocytes and hepatocytes according to the specific needs of each life cycle phase. While the repertoireof identified exported proteins is remarkably expanded in asexual P. falciparum blood stages, the putative export machinery and known targeting signatures are shared across life cycle stages. A better understanding of the molecular mechanisms underlying Plasmodium protein export could assist in designing novel strategies to interrupt transmission between Anopheles mosquitoes and humans.
Insights
Plasmodium parasites remodel host cells for survival. Understanding Plasmodium protein export across all life stages can help develop new malaria transmission-blocking strategies.
Area of Science:
- Parasitology
- Cell Biology
- Malaria Research
Background:
- Obligate intracellular pathogens remodel host cells for propagation.
- Plasmodium falciparum causes severe malaria by exporting factors to the erythrocyte membrane.
- Host cell remodeling is observed across multiple Plasmodium species.
Purpose of the Study:
- To investigate Plasmodium protein export mechanisms across different life cycle stages.
- To understand host cell renovation strategies employed by Plasmodium species.
- To identify potential targets for interrupting malaria transmission.
Main Methods:
- Comparative analysis of Plasmodium falciparum asexual and sexual blood stages.
- Imaging of liver stages in transgenic murine Plasmodium species.
- Molecular analysis of exported proteins and targeting signatures.
Main Results:
- Protein export occurs in all intracellular Plasmodium phases, from liver infection to sexual differentiation.
- Plasmodium species evolved distinct strategies for erythrocyte and hepatocyte renovation.
- Exported protein repertoire is expanded in P. falciparum asexual blood stages, but export machinery is conserved.
Conclusions:
- Plasmodium protein export is a conserved strategy across life cycle stages and species.
- Understanding protein export mechanisms is crucial for developing novel anti-malarial interventions.
- Targeting Plasmodium protein export could disrupt parasite transmission between vectors and hosts.
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