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裂 Cas9 表型筛选鉴定弓形虫中参与宿主细胞出芽和入侵的蛋白。

A splitCas9 phenotypic screen in Toxoplasma gondii identifies proteins involved in host cell egress and invasion.

机构信息

Experimental Parasitology, Department of Veterinary Sciences, Faculty of Veterinary Medicine, Ludwig-Maximilians-Universität, LMU, Munich, Germany.

Wellcome Centre for Integrative Parasitology, Institute of Infection, Immunity and Inflammation, Glasgow Biomedical Research Centre, University of Glasgow, Glasgow, UK.

出版信息

Nat Microbiol. 2022 Jun;7(6):882-895. doi: 10.1038/s41564-022-01114-y. Epub 2022 May 10.

DOI:10.1038/s41564-022-01114-y
PMID:35538310
Abstract

Apicomplexan parasites, such as Toxoplasma gondii, have specific adaptations that enable invasion and exit from the host cell. Owing to the phylogenetic distance between apicomplexan parasites and model organisms, comparative genomics has limited capacity to infer gene functions. Further, although CRISPR/Cas9-based screens have assigned roles to some Toxoplasma genes, the functions of encoded proteins have proven difficult to assign. To overcome this problem, we devised a conditional Cas9-system in T. gondii that enables phenotypic screens. Using an indicator strain for F-actin dynamics and apicoplast segregation, we screened 320 genes to identify those required for defined steps in the asexual life cycle. The detailed characterization of two genes identified in our screen, through the generation of conditional knockout parasites using the DiCre-system, revealed that signalling linking factor (SLF) is an integral part of a signalling complex required for early induction of egress, and a novel conoid protein (conoid gliding protein, CGP) functions late during egress and is required for the activation of gliding motility. Establishing different indicator lines and applying our conditional Cas9 screen could enable the identification of genes involved in organellar biogenesis, parasite replication or maintenance of the endosymbiotic organelles in the future.

摘要

顶复门寄生虫,如刚地弓形虫,具有特殊的适应性,使其能够入侵和离开宿主细胞。由于顶复门寄生虫和模式生物之间的系统发育距离,比较基因组学在推断基因功能方面的能力有限。此外,尽管基于 CRISPR/Cas9 的筛选已经确定了一些刚地弓形虫基因的作用,但编码蛋白的功能仍然难以确定。为了解决这个问题,我们在刚地弓形虫中设计了一种条件性 Cas9 系统,使其能够进行表型筛选。我们使用一种用于 F-肌动蛋白动力学和质体分离的指示株,筛选了 320 个基因,以确定在无性生命周期的特定步骤中所需的基因。通过使用 DiCre 系统生成条件性敲除寄生虫,对我们筛选出的两个基因进行了详细的特征描述,结果表明,信号连接因子 (SLF) 是一个信号复合物的组成部分,该复合物对于早期诱导出芽至关重要,一种新型的锥形体蛋白(锥形体滑行蛋白,CGP)在出芽后期发挥作用,并且对于滑行运动的激活是必需的。建立不同的指示株并应用我们的条件性 Cas9 筛选,未来可能能够鉴定参与细胞器发生、寄生虫复制或内共生细胞器维持的基因。

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