The three Plasmodium falciparum Aurora-related kinases display distinct temporal and spatial associations with mitotic structures in asexual blood stage parasites and gametocytes.

IF 3.7 2区 生物学 Q2 MICROBIOLOGY mSphere Pub Date : 2024-09-25 Epub Date: 2024-09-05 DOI:10.1128/msphere.00465-24
Matthias Wyss, Basil T Thommen, Jacob Kofler, Eilidh Carrington, Nicolas M B Brancucci, Till S Voss
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Abstract

Aurora kinases are crucial regulators of mitotic cell cycle progression in eukaryotes. The protozoan malaria parasite Plasmodium falciparum replicates via schizogony, a specialized mode of cell division characterized by consecutive asynchronous rounds of nuclear division by closed mitosis followed by a single cytokinesis event producing dozens of daughter cells. P. falciparum encodes three Aurora-related kinases (PfARKs) that have been reported essential for parasite proliferation, but their roles in regulating schizogony have not yet been explored in great detail. Here, we engineered transgenic parasite lines expressing GFP-tagged PfARK1-3 to provide a systematic analysis of their expression timing and subcellular localization throughout schizogony as well as in the non-dividing gametocyte stages, which are essential for malaria transmission. We demonstrate that all three PfARKs display distinct and highly specific and exclusive spatiotemporal associations with the mitotic machinery. In gametocytes, PfARK3 is undetectable, and PfARK1 and PfARK2 show male-specific expression in late-stage gametocytes, consistent with their requirement for endomitosis during male gametogenesis in the mosquito vector. Our combined data suggest that PfARK1 and PfARK2 have non-overlapping roles in centriolar plaque maturation, assembly of the mitotic spindle, kinetochore-spindle attachment and chromosome segregation, while PfARK3 seems to be exquisitely involved in daughter cell cytoskeleton assembly and cytokinesis. These important new insights provide a reliable foundation for future research aiming at the functional investigation of these divergent and possibly drug-targetable Aurora-related kinases in mitotic cell division of P. falciparum and related apicomplexan parasites.IMPORTANCEMalaria parasites replicate via non-conventional modes of mitotic cell division, such as schizogony, employed by the disease-causing stages in the human blood or endomitosis during male gametogenesis in the mosquito vector. Understanding the molecular mechanisms regulating cell division in these divergent unicellular eukaryotes is not only of scientific interest but also relevant to identify potential new antimalarial drug targets. Here, we carefully examined the subcellular localization of all three Plasmodium falciparum Aurora-related kinases (ARKs), distantly related homologs of Aurora kinases that coordinate mitosis in model eukaryotes. Detailed fluorescence microscopy-based analyses revealed distinct, specific, and exclusive spatial associations for each parasite ARK with different components of the mitotic machinery and at different phases of the cell cycle during schizogony and gametocytogenesis. This comprehensive set of results closes important gaps in our fragmentary knowledge on this important group of kinases and offers a valuable source of information for future functional studies.

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恶性疟原虫的三种极光相关激酶与无性血液期寄生虫和配子细胞中的有丝分裂结构有着不同的时间和空间关联。
极光激酶是真核生物有丝分裂细胞周期进展的关键调节因子。原生动物恶性疟原虫(Plasmodium falciparum)通过分裂进行复制,这是一种特殊的细胞分裂模式,其特点是通过闭合有丝分裂进行连续不同步的核分裂,然后进行一次细胞分裂,产生数十个子细胞。恶性疟原虫编码三种极光相关激酶(PfARKs),据报道这些激酶对寄生虫增殖至关重要,但它们在调控分裂过程中的作用尚未得到详细探讨。在这里,我们设计了表达 GFP 标记的 PfARK1-3 的转基因寄生虫品系,对它们在整个分裂期以及对疟疾传播至关重要的非分裂配子体阶段的表达时间和亚细胞定位进行了系统分析。我们的研究表明,所有三种 PfARKs 都与有丝分裂机制有着不同的、高度特异性和排他性的时空联系。在配子细胞中,PfARK3 检测不到,而 PfARK1 和 PfARK2 在后期配子细胞中显示出雄性特异性表达,这与它们在蚊媒雄性配子发生过程中的内吸作用要求一致。我们的综合数据表明,PfARK1 和 PfARK2 在向心性斑块成熟、有丝分裂纺锤体组装、动核-纺锤体附着和染色体分离中具有非重叠的作用,而 PfARK3 似乎极好地参与了子细胞细胞骨架组装和细胞分裂。这些重要的新发现为今后研究恶性疟原虫及相关类疟原虫有丝分裂细胞分裂过程中这些不同的、可能具有药物靶向性的极光相关激酶的功能奠定了可靠的基础。了解这些不同的单细胞真核生物细胞分裂的分子调控机制不仅具有科学意义,而且与确定潜在的抗疟新药靶点有关。在这里,我们仔细研究了恶性疟原虫中所有三种极光相关激酶(Aurora-related kinases,ARKs)的亚细胞定位,它们是极光激酶的远缘同源物,在模式真核生物中协调有丝分裂。基于荧光显微镜的详细分析揭示了每种寄生虫 ARK 在分裂和配子细胞发生过程中,在细胞周期的不同阶段与有丝分裂机制的不同成分存在不同、特异和排他性的空间关联。这些全面的结果填补了我们对这组重要激酶零散知识的重要空白,并为未来的功能研究提供了宝贵的信息来源。
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来源期刊
mSphere
mSphere Immunology and Microbiology-Microbiology
CiteScore
8.50
自引率
2.10%
发文量
192
审稿时长
11 weeks
期刊介绍: mSphere™ is a multi-disciplinary open-access journal that will focus on rapid publication of fundamental contributions to our understanding of microbiology. Its scope will reflect the immense range of fields within the microbial sciences, creating new opportunities for researchers to share findings that are transforming our understanding of human health and disease, ecosystems, neuroscience, agriculture, energy production, climate change, evolution, biogeochemical cycling, and food and drug production. Submissions will be encouraged of all high-quality work that makes fundamental contributions to our understanding of microbiology. mSphere™ will provide streamlined decisions, while carrying on ASM''s tradition for rigorous peer review.
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