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首页> 外文期刊>Parasitology >Besnoitia besnoiti and toxoplasma gondii: Two apicomplexan strategies to manipulate the host cell centrosome and golgi apparatus
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Besnoitia besnoiti and toxoplasma gondii: Two apicomplexan strategies to manipulate the host cell centrosome and golgi apparatus

机译:贝氏疟原虫和弓形虫:操纵宿主细胞中心体和高尔基体的两种apicomplexan策略

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Besnoitia besnoiti and Toxoplasma gondii are two closely related parasites that interact with the host cell microtubule cytoskeleton during host cell invasion. Here we studied the relationship between the ability of these parasites to invade and to recruit the host cell centrosome and the Golgi apparatus. We observed that T. gondii recruits the host cell centrosome towards the parasitophorous vacuole (PV), whereas B. besnoiti does not. Notably, both parasites recruit the host Golgi apparatus to the PV but its organization is affected in different ways. We also investigated the impact of depleting and over-expressing the host centrosomal protein TBCCD1, involved in centrosome positioning and Golgi apparatus integrity, on the ability of these parasites to invade and replicate. Toxoplasma gondii replication rate decreases in cells over-expressing TBCCD1 but not in TBCCD1-depleted cells; while for B. besnoiti no differences were found. However, B. besnoiti promotes a reorganization of the Golgi ribbon previously fragmented by TBCCD1 depletion. These results suggest that successful establishment of PVs in the host cell requires modulation of the Golgi apparatus which probably involves modifications in microtubule cytoskeleton organization and dynamics. These differences in how T. gondii and B. besnoiti interact with their host cells may indicate different evolutionary paths.
机译:贝氏疟原虫和弓形虫是两个紧密相关的寄生虫,它们在宿主细胞入侵期间与宿主细胞微管细胞骨架相互作用。在这里,我们研究了这些寄生虫入侵和募集宿主细胞中心体与高尔基体之间的关系。我们观察到弓形虫将宿主细胞中心体募集到寄生虫的液泡(PV)中,而贝氏梭菌则没有。值得注意的是,两种寄生虫都将宿主高尔基体募集到PV中,但是其组织受到不同方式的影响。我们还研究了耗尽和过表达宿主中心体蛋白TBCCD1(涉及中心体定位和高尔基体完整性)对这些寄生虫侵袭和复制能力的影响。在过表达TBCCD1的细胞中弓形虫的复制速率降低,但在TBCCD1缺失的细胞中则没有。而对于B. besnoiti,没有发现差异。但是,B。besnoiti促进了先前被TBCCD1耗尽而破碎的高尔基带的重组。这些结果表明,在宿主细胞中成功建立PV需要调节高尔基体,这可能涉及微管细胞骨架组织和动力学的修饰。弓形虫和贝氏芽孢杆菌如何与其宿主细胞相互作用的这些差异可能表明了不同的进化途径。

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