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首页> 外文期刊>Cellular microbiology >The rhoptry neck protein RON4 relocalizes at the moving junction during Toxoplasma gondii invasion
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The rhoptry neck protein RON4 relocalizes at the moving junction during Toxoplasma gondii invasion

机译:刚地弓形虫入侵期间,流纹颈蛋白RON4重新定位在活动连接处

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摘要

Host cell invasion in the Apicomplexa is unique in its dependency on a parasite actin-driven machinery and in the exclusion of most host cell membrane proteins during parasitophorous vacuole (PV) formation. This exclusion occurs at a junction between host cell and parasite plasma membranes that has been called the moving junction, a circumferential zone which forms at the apical tip of the parasite, moves backward and eventually pinches the PV from the host cell membrane. Despite having been described by electron microscopic studies 30 years ago, the molecular nature of this singular structure is still enigmatic. We have obtained a monoclonal antibody that recognizes the moving junction of invading tachyzoites of Toxoplasma gondii, in a pattern clearly distinct from those described so far for microneme and rhoptry proteins. The protein recognized by this antibody has been affinity purified. Mass spectrometry analysis showed that it is a rhoptry neck protein (RON4), a hypothetical protein with homologues restricted to Apicomplexa. Our findings reveals for the first time the participation of rhoptry neck proteins in moving junction formation and strongly suggest the conservation of this structure at the molecular level among Apicomplexa.
机译:蚜虫复合体中宿主细胞的入侵是独特的,因为它依赖于寄生虫肌动蛋白驱动的机制,并且在寄生虫空泡(PV)形成过程中排除了大多数宿主细胞膜蛋白。这种排斥发生在宿主细胞和寄生虫质膜之间的接合处,该接合处被称为移动接合处,在寄生虫的顶尖形成的圆周区域向后移动,并最终夹住宿主细胞膜上的PV。尽管在30年前已通过电子显微镜研究进行了描述,但这种奇异结构的分子性质仍然是令人迷惑的。我们已经获得了一种单克隆抗体,该抗体可以识别刚体弓形虫入侵速殖子的活动连接,其模式与迄今为止针对微克星和rhoptry蛋白所述的模式明显不同。该抗体识别的蛋白质已被亲和纯化。质谱分析表明,它是一种rhoptry颈部蛋白(RON4),一种假想蛋白,其同源物仅限于Apicomplexa。我们的研究结果首次揭示了rhoptry颈部蛋白参与运动连接形成,并强烈建议在Apicomplexa中在分子水平上保护该结构。

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