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The fine structure of secretion by Plasmodium knowlesi merozoites during red cell invasion
1Department of Anatomy, United Medical School, Guy's Hospital, London, United Kingdom.
Abstract:
The secretory organelles of Plasmodium knowlesi were studied ultrastructurally to examine their mode of action during invasion. The formation of lamellar structures in merozoite rhoptries within late stage schizonts is prevented by the protease inhibitors chymostatin and leupeptin. Under normal conditions vesicles lined by 6-nm membranes are formed in rhoptries during erythrocyte invasion. Stereoscopic viewing of tilted sections shows that where the merozoite apex contacts the parasitophorous vacuole (PV) membrane during invasion, a domed elevation of the PV surface lies within the mouth of the rhoptry duct in contact with the secretory matrix. The membrane of the early invasion pit is thinner (6 nm) than the red cell membrane elsewhere, and sheets of lamellar material are frequently present on the invasion pit surface. These findings support the proposal that the rhoptry-microneme complex is capable of generating membranous material and inserting it into the red cell surface in a controlled manner to create the parasitophorous vacuole. On the basis of this model, measurements from serial sections show that the rhoptries could provide enough material to create a membrane lining the parasitophorous vacuole, and, with the contribution of the microspheres, could double it to accommodate the early ring stage of the parasite.
Insights
Plasmodium knowlesi merozoites use rhoptry secretory organelles to generate membrane material for creating the parasitophorous vacuole during red blood cell invasion. Protease inhibitors block lamellar structure formation in rhoptries.
Area of Science:
- Cell Biology
- Parasitology
- Molecular Biology
Background:
- Plasmodium knowlesi causes malaria.
- Merozoites invade red blood cells.
- Secretory organelles are crucial for invasion.
Purpose of the Study:
- To ultrastructurally examine the mode of action of Plasmodium knowlesi secretory organelles during invasion.
- To investigate the role of rhoptries in forming the parasitophorous vacuole.
Main Methods:
- Ultrastructural study of Plasmodium knowlesi merozoites.
- Use of protease inhibitors (chymostatin and leupeptin).
- Stereoscopic viewing of tilted sections.
Main Results:
- Protease inhibitors prevented lamellar structure formation in merozoite rhoptries.
- Vesicles lined by 6-nm membranes formed in rhoptries during invasion.
- The rhoptry-microneme complex generates membranous material for the parasitophorous vacuole.
- Rhoptries can provide sufficient material to line and potentially double the parasitophorous vacuole membrane.
Conclusions:
- The rhoptry-microneme complex actively generates and inserts membrane material into the red cell surface.
- This process forms the parasitophorous vacuole, accommodating the parasite during early development.