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A Novel Tool for the Generation of Conditional Knockouts To Study Gene Function across the Plasmodium falciparum Life Cycle

机译:一种新型的产生条件基因敲除的工具,用于研究恶性疟原虫生命周期的基因功能

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One of the major limitations in studying P. falciparum is that so far only asexual stages are amenable to rapid conditional genetic modification. The most promising drug targets and vaccine candidates, however, have been refractory to genetic modification because they are essential during the blood stage or for transmission in the mosquito vector. This leaves a major gap in our understanding of parasite proteins in most life cycle stages and hinders genetic validation of drug and vaccine targets. Here, we describe a method that supports conditional gene deletion across the P. falciparum life cycle for the first time. We demonstrate its potential by deleting essential and nonessential genes at different parasite stages, which opens up completely new avenues for the study of malaria and drug development. It may also allow the realization of novel vaccination strategies using attenuated parasites. ABSTRACT Plasmodium falciparum has a complex life cycle that involves interaction with multiple tissues inside the human and mosquito hosts. Identification of essential genes at all different stages of the P. falciparum life cycle is urgently required for clinical development of tools for malaria control and eradication. However, the study of P. falciparum is limited by the inability to genetically modify the parasite throughout its life cycle with the currently available genetic tools. Here, we describe the detailed characterization of a new marker-free P. falciparum parasite line that expresses rapamycin-inducible Cre recombinase across the full life cycle. Using this parasite line, we were able to conditionally delete the essential invasion ligand AMA1 in three different developmental stages for the first time. We further confirm efficient gene deletion by targeting the nonessential kinase FIKK7.1.
机译:研究恶性疟原虫的主要限制之一是,到目前为止,只有无性阶段才能进行快速的条件遗传修饰。然而,最有前途的药物靶标和疫苗候选物对遗传修饰具有抗性,因为它们在血液阶段或在蚊媒中传播至关重要。这在我们对大多数生命周期阶段的寄生虫蛋白的理解上留下了重大空白,并阻碍了药物和疫苗靶标的基因验证。在这里,我们描述了一种方法,它首次支持在恶性疟原虫的整个生命周期中进行条件基因删除。我们通过删除不同寄生虫阶段的必需和非必需基因来证明其潜力,这为研究疟疾和药物开发开辟了全新的途径。它还可能允许使用减毒寄生虫实现新的疫苗接种策略。摘要恶性疟原虫具有复杂的生命周期,涉及与人类和蚊子宿主内部的多个组织相互作用。临床开发控制和根除疟疾的工具迫切需要在恶性疟原虫生命周期的所有不同阶段鉴定必需基因。但是,恶性疟原虫的研究受到无法利用当前可用的遗传工具在其整个生命周期内对寄生虫进行遗传修饰的限制。在这里,我们描述了在整个生命周期中表达雷帕霉素诱导的Cre重组酶的无标记恶性疟原虫新品系的详细特征。使用该寄生物系,我们能够在三个不同的发育阶段首次有条件地删除必需的入侵配体AMA1。我们进一步针对非必需激酶FIKK7.1确认有效的基因删除。

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