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Toxoplasma gondii Sporozoites Invade Host Cells Using Two Novel Paralogues of RON2 and AMA1

机译:弓形虫弓形虫子孢子侵入宿主细胞使用两种新型的RON2和AMA1旁系同源物。

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摘要

Toxoplasma gondii is an obligate intracellular parasite of the phylum Apicomplexa. The interaction of two well-studied proteins, Apical Membrane Antigen 1 (AMA1) and Rhoptry Neck protein 2 (RON2), has been shown to be critical for invasion by the asexual tachyzoite stage. Recently, two paralogues of these proteins, dubbed sporoAMA1 and sporoRON2 (or RON2L2), respectively, have been identified but not further characterized in proteomic and transcriptomic analyses of Toxoplasma sporozoites. Here, we show that sporoAMA1 and sporoRON2 localize to the apical region of sporozoites and that, in vitro, they interact specifically and exclusively, with no detectable interaction of sporoAMA1 with generic RON2 or sporoRON2 with generic AMA1. Structural studies of the interacting domains of sporoRON2 and sporoAMA1 indicate a novel pairing that is similar in overall form but distinct in detail from the previously described interaction of the generic pairing. Most notably, binding of sporoRON2 domain 3 to domains I/II of sporoAMA1 results in major alterations in the latter protein at the site of binding and allosterically in the membrane-proximal domain III of sporoAMA1 suggesting a possible role in signaling. Lastly, pretreatment of sporozoites with domain 3 of sporoRON2 substantially impedes their invasion into host cells while having no effect on tachyzoites, and vice versa for domain 3 of generic RON2 (which inhibits tachyzoite but not sporozoite invasion). These data indicate that sporozoites and tachyzoites each use a distinct pair of paralogous AMA1 and RON2 proteins for invasion into host cells, possibly due to the very different environment in which they each must function.
机译:刚体弓形虫是尖顶蚜的专性细胞内寄生虫。研究表明,两种经过深入研究的蛋白质,顶膜抗原1(AMA1)和Rhoptry Neck蛋白2(RON2)的相互作用对于无性速殖子阶段的入侵至关重要。最近,已经鉴定出这些蛋白的两个旁系同源物,分别称为sporoAMA1和sporoRON2(或RON2L2),但在弓形虫子孢子的蛋白质组学和转录组学分析中没有进一步表征。在这里,我们显示sporoAMA1和sporoRON2定位于子孢子的顶端区域,并且在体外,它们特异性地和排他性地相互作用,没有可检测的sporoAMA1与通用RON2或sporoRON2与通用AMA1相互作用。对sporoRON2和sporoAMA1相互作用域的结构研究表明,一种新颖的配对在总体形式上相似,但与先前描述的通用配对的相互作用在细节上截然不同。最值得注意的是,sporoRON2结构域3与sporoAMA1的结构域I / II的结合会导致后者蛋白在结合位点发生重大变化,并且在sporoAMA1的膜近端结构域III中发生变构,表明可能在信号传导中起作用。最后,用sporoRON2的结构域3预处理的子孢子实质上会阻止其侵入宿主细胞,而对速殖子没有影响,反之亦然,对于通用RON2的结构域3(抑制速殖子,但不能抑制子孢子的侵袭)。这些数据表明,子孢子和速殖子各自使用一对截然不同的旁源AMA1和RON2蛋白入侵宿主细胞,这可能是由于它们各自必须发挥作用的环境非常不同。

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