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首页> 外文期刊>Journal of cell biology >The Toxoplasma gondii protein ROP2 mediates host organelle association with the parasitophorous vacuole membrane
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The Toxoplasma gondii protein ROP2 mediates host organelle association with the parasitophorous vacuole membrane

机译:弓形虫蛋白ROP2介导宿主细胞器与寄生虫液泡膜结合。

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T oxoplasma gondii replicates within a specialized vacuole surrounded by the parasitophorous vacuole membrane (PVM). The PVM forms intimate interactions with host mitochondria and endoplasmic reticulum (ER) in a process termed PVM–organelle association. In this study we identify a likely mediator of this process, the parasite protein ROP2. ROP2, which is localized to the PVM, is secreted from anterior organelles termed rhoptries during parasite invasion into host cells. The NH2-terminal domain of ROP2 (ROP2hc) within the PVM is exposed to the host cell cytosol, and has characteristics of a mitochondrial targeting signal. In in vitro assays, ROP2hc is partially translocated into the mitochondrial outer membrane and behaves like an integral membrane protein. Although ROP2hc does not translocate across the ER membrane, it does exhibit carbonate-resistant binding to this organelle. In vivo, ROP2hc expressed as a soluble fragment in the cytosol of uninfected cells associates with both mitochondria and ER. The 30–amino acid (aa) NH2-terminal sequence of ROP2hc, when fused to green fluorescent protein (GFP), is sufficient for mitochondrial targeting. Deletion of the 30-aa NH2-terminal signal from ROP2hc results in robust localization of the truncated protein to the ER. These results demonstrate a new mechanism for tight association of different membrane-bound organelles within the cell cytoplasm.
机译:弓形虫在被寄生虫液泡膜(PVM)包围的特殊液泡内复制。 PVM与宿主线粒体和内质网(ER)形成紧密的相互作用,称为PVM-细胞器关联。在这项研究中,我们确定了此过程的可能介体,即寄生蛋白ROP2。定位于PVM的ROP2是在寄生虫侵入宿主细胞期间从称为rhoptries的前细胞器分泌的。 PVM中ROP2的NH2末端结构域(ROP2hc)暴露于宿主细胞胞质溶胶,并具有线粒体靶向信号的特征。在体外测定中,ROP2hc部分转运到线粒体外膜中,其行为类似于完整的膜蛋白。尽管ROP2hc不会跨过ER膜转运,但它确实表现出与该细胞器抗碳酸盐的结合。在体内,ROP2hc在未感染细胞的胞浆中表达为可溶片段,与线粒体和ER相关。当与绿色荧光蛋白(GFP)融合时,ROP2hc的30个氨基酸(aa)NH2末端序列足以用于线粒体靶向。从ROP2hc删除30-aa NH2末端信号会导致截短的蛋白向ER稳定定位。这些结果证明了在细胞质内不同膜结合的细胞器紧密结合的新机制。

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