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Updated: Jul 2, 2025

Author Spotlight: Identifying Compensatory Pathways in Malaria Parasites Containing Hypomorphic Allele of Essential Protein Kinases
Published on: November 22, 2024
Nuclear pore complexes undergo Nup221 exchange during blood stage asexual replication of Plasmodium parasites
Abstract:
Plasmodium parasites, which are the causative agents of malaria, undergo closed mitosis without breakdown of the nuclear envelope. Unlike the closed mitosis in yeast, P. berghei parasites undergo multiple rounds of asynchronous nuclear divisions in a shared cytoplasm result in a multinucleated (8-24) organism prior to formation of daughter cells within an infected red blood cell. During this replication process, intact nuclear pore complexes (NPCs) and their component nucleoporins are likely to play critical roles in parasite growth, facilitating selective bi-directional nucleocytoplasmic transport and genome organization. Here we utilize ultrastructure expansion microscopy (U-ExM) to investigate P. berghei Nup138, Nup221, and Nup313 at the single nucleus level throughout the 24 hour blood-stage replication cycle. Our findings reveal that these Nups are evenly distributed around the nuclei and organized in a rosette structure previously undescribed around the centriolar plaque, which is responsible for intranuclear microtubule nucleation during mitosis. We also detect an increased number of NPCs compared with previously reported, highlighting the power of U-ExM. By adapting the recombination-induced tag exchange (RITE) system to P. berghei, we provide evidence of NPC maintenance, demonstrating Nup221 turnover during parasite asexual replication. Our data shed light on the distribution of NPCs and their homeostasis during the blood-stage replication of P. berghei parasites. Further studies into the nuclear surface of these parasites will allow for a better understanding of parasites nuclear mechanics and organization.
Insights
Malaria parasites (Plasmodium) undergo unique closed mitosis. Researchers used expansion microscopy to study nuclear pore complexes (NPCs) and nucleoporins during parasite replication, revealing novel rosette structures and NPC maintenance mechanisms.
Area of Science:
- Cell Biology
- Parasitology
- Microscopy
Background:
- Malaria parasites (Plasmodium) exhibit closed mitosis without nuclear envelope breakdown.
- Multiple asynchronous nuclear divisions occur within a shared cytoplasm, forming multinucleated parasites.
- Nuclear pore complexes (NPCs) and nucleoporins are crucial for nucleocytoplasmic transport and genome organization during parasite replication.
Approach:
- Utilized ultrastructure expansion microscopy (U-ExM) to visualize P. berghei nucleoporins (Nup138, Nup221, Nup313) at the single nucleus level.
- Adapted the recombination-induced tag exchange (RITE) system to study NPC component turnover.
- Investigated nuclear pore complex distribution and organization throughout the 24-hour blood-stage replication cycle.
Key Points:
- Revealed even distribution of Nups around nuclei and a novel rosette structure around the centriolar plaque.
- Observed an increased number of NPCs compared to previous reports, showcasing U-ExM's power.
- Provided evidence for NPC maintenance and Nup221 turnover during asexual replication using the RITE system.
Conclusions:
- Elucidated the distribution and organization of NPCs during P. berghei blood-stage replication.
- Demonstrated NPC homeostasis and nucleoporin turnover, specifically Nup221.
- Highlighted the importance of NPCs in parasite nuclear mechanics and organization, paving the way for further research.
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