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Molecular Characterization of Toxoplasma gondii Formin 3 an Actin Nucleator Dispensable for Tachyzoite Growth and Motility

机译:弓形虫Formin 3的分子表征一种速殖子生长和运动性所必需的肌动蛋白成核剂。

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摘要

Toxoplasma gondii belongs to the phylum Apicomplexa, a group of obligate intracellular parasites that rely on gliding motility to enter host cells. Drugs interfering with the actin cytoskeleton block parasite motility, host cell invasion, and egress from infected cells. Myosin A, profilin, formin 1, formin 2, and actin-depolymerizing factor have all been implicated in parasite motility, yet little is known regarding the importance of actin polymerization and other myosins for the remaining steps of the parasite lytic cycle. Here we establish that T. gondii formin 3 (TgFRM3), a newly described formin homology 2 domain (FH2)-containing protein, binds to Toxoplasma actin and nucleates rabbit actin assembly in vitro. TgFRM3 expressed as a transgene exhibits a patchy localization at several distinct structures within the parasite. Disruption of the TgFRM3 gene by double homologous recombination in a ku80-ko strain reveals no vital function for tachyzoite propagation in vitro, which is consistent with its weak level of expression in this life stage. Conditional stabilization of truncated forms of TgFRM3 suggests that different regions of the molecule contribute to distinct localizations. Moreover, expression of TgFRM3 lacking the C-terminal domain severely affects parasite growth and replication. This work provides a first insight into how this specialized formin, restricted to the group of coccidia, completes its actin-nucleating activity.
机译:弓形虫属于复杂的门静脉,这是一组专心的细胞内寄生虫,依靠滑行运动进入宿主细胞。干扰肌动蛋白细胞骨架的药物会阻止寄生虫运动,宿主细胞入侵以及从感染细胞中逸出。肌球蛋白A,脯氨酸蛋白,甲酰胺1,甲酰胺2,肌动蛋白解聚因子均与寄生虫运动有关,但关于肌动蛋白聚合和其他肌球蛋白对于寄生虫裂解循环其余步骤的重要性知之甚少。在这里,我们建立刚体弓形虫formin 3(TgFRM3),一种新描述的含有formin同源性2结构域(FH2)的蛋白质,与弓形体肌动蛋白结合并在体外使兔肌动蛋白组装成核。表示为转基因的TgFRM3在寄生虫内的几个不同结构上显示出斑片状的定位。在ku80-ko菌株中通过双重同源重组破坏TgFRM3基因没有发现对于速殖子体外繁殖至关重要的功能,这与其在这一生命阶段的弱表达水平是一致的。 TgFRM3的截短形式的条件稳定表明该分子的不同区域有助于不同的定位。而且,缺乏C末端结构域的TgFRM3的表达严重影响寄生虫的生长和复制。这项工作提供了一个初步见解,以这种专门的形式,仅限于球菌的形式,完成其肌动蛋白成核活性。

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