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Updated: Jun 7, 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
James Blauwkamp1, Sushma V Ambekar2, Tahir Hussain2
1Department of Pharmacology and Toxicology, Indiana University School of Medicine, Indianapolis, Indiana, USA.
Abstract:
Plasmodium parasites, the causative agents of malaria, undergo closed mitosis without breakdown of the nuclear envelope. Unlike closed mitosis in yeast, Plasmodium berghei parasites undergo multiple rounds of asynchronous nuclear divisions in a shared cytoplasm. This results in a multinucleated organism prior to the formation of daughter cells within an infected red blood cell. During this replication process, intact nuclear pore complexes (NPCs) and their component nucleoporins play critical roles in parasite growth, facilitating selective bi-directional nucleocytoplasmic transport and genome organization. Here, we utilize ultrastructure expansion microscopy to investigate P. berghei nucleoporins at the single nucleus level throughout the 24-hour blood-stage replication cycle. Our findings reveal that these nucleoporins are distributed around the nuclei and organized in a rosette structure previously undescribed around the centriolar plaque, responsible for intranuclear microtubule nucleation during mitosis. By adapting the recombination-induced tag exchange system to P. berghei through a single plasmid tagging system, which includes the tagging plasmid as well as the Cre recombinase, we provide evidence of NPC formation dynamics, 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.
Importance:
Malaria, caused by Plasmodium species, remains a critical global health challenge, with an estimated 249 million cases and over 600,000 deaths in 2022, primarily affecting children under five. Understanding the nuclear dynamics of Plasmodium parasites, particularly during their unique mitotic processes, is crucial for developing novel therapeutic strategies. Our study leverages advanced microscopy techniques, such as ultrastructure expansion microscopy, to reveal the organization and turnover of nuclear pore complexes (NPCs) during the parasite's asexual replication. By elucidating these previously unknown aspects of NPC distribution and homeostasis, we provide valuable insights into the molecular mechanisms governing parasite mitosis. These findings deepen our understanding of parasite biology and may inform future research aimed at identifying new targets for anti-malarial drug development.
Insights
Researchers studied nuclear pore complexes (NPCs) in malaria parasites (Plasmodium berghei) during replication. They discovered NPCs form a rosette structure around the centriolar plaque and identified Nup221 turnover, offering insights into parasite nuclear dynamics.
Area of Science:
- Cell Biology
- Parasitology
- Microscopy
Background:
- Malaria, caused by Plasmodium parasites, presents a significant global health burden.
- Plasmodium parasites exhibit unique closed mitosis without nuclear envelope breakdown.
- Nuclear pore complexes (NPCs) are vital for nucleocytoplasmic transport and genome organization during parasite replication.
Purpose of the Study:
- To investigate the distribution and dynamics of NPCs and nucleoporins in Plasmodium berghei during its asexual blood-stage replication cycle.
- To elucidate the structural organization of NPCs at the single nucleus level using advanced microscopy.
- To understand the role of NPCs in parasite growth and nuclear division.
Main Methods:
- Utilized ultrastructure expansion microscopy to visualize P. berghei nucleoporins at high resolution.
- Adapted a recombination-induced tag exchange system for single plasmid tagging in P. berghei.
- Analyzed NPC distribution and Nup221 turnover throughout the parasite's 24-hour replication cycle.
Main Results:
- Discovered nucleoporins form an undescribed rosette structure around the centriolar plaque, involved in microtubule nucleation.
- Provided evidence for NPC formation dynamics and Nup221 turnover during asexual replication.
- Detailed the distribution and homeostasis of NPCs within the parasite nucleus.
Conclusions:
- The study reveals a novel rosette organization of NPCs around the centriolar plaque in Plasmodium berghei.
- Demonstrated NPC dynamics, including Nup221 turnover, are crucial for parasite asexual replication.
- These findings enhance understanding of Plasmodium nuclear biology and may guide anti-malarial drug development.
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