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Host Cell Invasion by Toxoplasma gondii Is Temporally Regulated by the Host Microtubule Cytoskeleton ▿ †

机译:弓形虫对宿主细胞的入侵由宿主微管细胞骨架暂时调控。 ▿ †

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摘要

Toxoplasma gondii is an obligate intracellular protozoan parasite that invades and replicates within most nucleated cells of warm-blooded animals. The basis for this wide host cell tropism is unknown but could be because parasites invade host cells using distinct pathways and/or repertoires of host factors. Using synchronized parasite invasion assays, we found that host microtubule disruption significantly reduces parasite invasion into host cells early after stimulating parasite invasion but not at later time points. Host microtubules are specifically associated with the moving junction, which is the site of contact between the host cell and the invading parasite. Host microtubules are specifically associated with the moving junction of those parasites invading early after stimulating invasion but not with those invading later. Disruption of host microtubules has no effect on parasite contact, attachment, motility, or rate of penetration. Rather, host microtubules hasten the time before parasites commence invasion. This effect on parasite invasion is distinct from the role that host microtubules play in bacterial and viral infections, where they function to traffic the pathogen or pathogen-derived material from the host cell's periphery to its interior. These data indicate that the host microtubule cytoskeleton is a structure used by Toxoplasma to rapidly infect its host cell and highlight a novel function for host microtubules in microbial pathogenesis.
机译:弓形虫是专性的细胞内原生动物寄生虫,可在温血动物的大多数有核细胞内侵入并复制。这种广泛的宿主细胞向性的基础是未知的,但可能是因为寄生虫使用不同的途径和/或宿主因子库入侵宿主细胞。使用同步的寄生虫侵袭试验,我们发现宿主微管破坏在刺激寄生虫侵袭后尽早显着减少了寄生虫侵袭到宿主细胞中,但在以后的时间点却没有。宿主微管与活动连接特别相关,活动连接是宿主细胞与入侵寄生虫之间的接触部位。宿主微管与刺激入侵后早期入侵的那些寄生虫的活动连接特别相关,但与后来入侵的那些无关。宿主微管的破裂对寄生虫的接触,附着,运动或穿透率没有影响。而是,宿主微管加快了寄生虫开始入侵的时间。这种对寄生虫入侵的影响不同于宿主微管在细菌和病毒感染中所起的作用,在宿主和微管中,它们起着将病原体或病原体来源的物质从宿主细胞外围转运到内部的作用。这些数据表明,宿主微管细胞骨架是弓形虫用来快速感染其宿主细胞并突显宿主微管在微生物发病机理中的新功能的结构。

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