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约氏疟原虫 S4/CelTOS 对子孢子的滑行运动和细胞穿透很重要。

Plasmodium yoelii S4/CelTOS is important for sporozoite gliding motility and cell traversal.

机构信息

Center for Infectious Disease Research, formerly Seattle Biomedical Research Institute, Seattle, Washington, USA.

Department of Global Health, University of Washington, Seattle, Washington, USA.

出版信息

Cell Microbiol. 2018 Apr;20(4). doi: 10.1111/cmi.12817. Epub 2018 Jan 12.

Abstract

Gliding motility and cell traversal by the Plasmodium ookinete and sporozoite invasive stages allow penetration of cellular barriers to establish infection of the mosquito vector and mammalian host, respectively. Motility and traversal are not observed in red cell infectious merozoites, and we have previously classified genes that are expressed in sporozoites but not merozoites (S genes) in order to identify proteins involved in these processes. The S4 gene has been described as criticaly involved in Cell Traversal for Ookinetes and Sporozoites (CelTOS), yet knockout parasites (s4/celtos¯) do not generate robust salivary gland sporozoite numbers, precluding a thorough analysis of S4/CelTOS function during host infection. We show here that a failure of oocysts to develop or survive in the midgut contributes to the poor mosquito infection by Plasmodium yoelii (Py) s4/celtos¯ rodent malaria parasites. We rescued this phenotype by expressing S4/CelTOS under the ookinete-specific circumsporozoite protein and thrombospondin-related anonymous protein-related protein (CTRP) promoter (S4/CelTOS ), generating robust numbers of salivary gland sporozoites lacking S4/CelTOS that were suitable for phenotypic analysis. Py S4/CelTOS sporozoites showed reduced infectivity in BALB/c mice when compared to wild-type sporozoites, although they appeared more infectious than sporozoites deficient in the related traversal protein PLP1/SPECT2 (Py plp1/spect2¯). Using in vitro assays, we substantiate the role of S4/CelTOS in sporozoite cell traversal, but also uncover a previously unappreciated role for this protein for sporozoite gliding motility.

摘要

飞动运动和疟原虫配子体和子孢子的细胞穿透能力允许穿透细胞屏障,分别在蚊媒和哺乳动物宿主中建立感染。在红细胞感染性裂殖子中观察不到运动和穿透,我们之前已经对在子孢子中表达但不在裂殖子中表达的基因(S 基因)进行了分类,以鉴定参与这些过程的蛋白质。S4 基因被描述为在配子体和子孢子的细胞穿透(CelTOS)中至关重要,但敲除寄生虫(s4/celtos¯)不会产生大量的唾液腺子孢子,从而排除了在宿主感染期间对 S4/CelTOS 功能进行全面分析的可能性。我们在这里表明,卵囊在中肠中不能发育或存活,这导致了疟原虫 yoelii(Py)s4/celtos¯ 鼠疟寄生虫对蚊子的感染不良。我们通过在配子体特异性环子孢子蛋白和血栓素相关匿名蛋白相关蛋白(CTRP)启动子(S4/CelTOS)下表达 S4/CelTOS 来挽救这种表型,产生了大量缺乏 S4/CelTOS 的唾液腺子孢子,适合表型分析。与野生型子孢子相比,Py S4/CelTOS 子孢子在 BALB/c 小鼠中的感染性降低,尽管它们似乎比缺乏相关穿透蛋白 PLP1/SPECT2(Py plp1/spect2¯)的子孢子更具感染性。通过体外测定,我们证实了 S4/CelTOS 在子孢子细胞穿透中的作用,但也揭示了该蛋白在子孢子滑行运动中的先前未被认识到的作用。

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