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首页> 外文期刊>European Journal of Cell Biology: Journal of Deutsche Gesellschaft fur Elektronenmikroskopie: Journal of Deutsche Gesellschaft fur Zellbiologie >Toxoplasma PRP1 is an ortholog of parafusin (PFUS) in vesicle scaffold assembly in Ca(2+)-regulated exocytosis
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Toxoplasma PRP1 is an ortholog of parafusin (PFUS) in vesicle scaffold assembly in Ca(2+)-regulated exocytosis

机译:弓形虫PRP1是parafusin(PFUS)的直向同源物在Ca(2+)调控的胞吐作用的囊泡支架中。

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摘要

The Paramecium tetraurelia protein parafusin (PFUS) and the Toxoplasma gondii protein parafusin-related protein 1 (PRP1) both have two covalent modifications (phosphorylation and phosphoglucosylation) and both are members of the phosphoglucomutase superfamily, associating with secretory vesicle scaffolds in their respective cells. This study tests the hypothesis that PRP1 is a functional ortholog of PFUS, functioning identically in Ca(2+)-regulated exocytosis. Electroporation of fluorescently labeled recombinant His-PRP1 into live Paramecium cells resulted in its localization to docked, dense-core secretory vesicles (DCSVs) in a pattern identical to endogenous PFUS. In tam8 mutants, defective in transport of DCSVs, the fluorescently labeled protein was restricted to the un-transported DCSVs. Specificity of PRP1 localization was demonstrated by electroporating labeled actin or pyruvate kinase, which both failed to localize to either docked or undocked vesicles. In wild-type Paramecium, electroporated His-PRP1 dissociated from DCSVs upon exocytosis, and re-associated as new organelles formed. Mutagenized His-PRP1 species (S146A or S146E) cannot be phosphorylated by P2 calcium-dependent kinase in vitro. Upon electroporation, these molecules remained cytoplasmic and un-associated with DCSVs, while mutation of another PRP1 serine residue (S560A) did neither affect the localization to the DCSVs nor the phosphorylation pattern. Therefore, in this heterologous system, localization, transport and dissociation/re-association of PRP1 substituted for PFUS, supporting the conclusion that the proteins are functional orthologs. The assay also identified a strategic residue S146 within the PFUS ortholog (S138 in PFUS by extrapolation) required for post-translational modification, DCSV scaffold association and for exocytosis.
机译:履带毛虫草履虫蛋白副融合酶(PFUS)和弓形虫副蛋白融合蛋白相关蛋白1(PRP1)都具有两个共价修饰(磷酸化和磷酸葡萄糖基化),并且都是磷酸葡萄糖变位酶超家族的成员,与各自细胞中的分泌性囊泡支架相关。这项研究测试的假设是PRP1是PFUS的功能直系同源基因,在Ca(2+)调控的胞吐作用中功能相同。荧光标记的重组His-PRP1的电穿孔进入活的草履虫细胞,导致其以与内源性PFUS相同的模式定位于对接的致密核心分泌囊泡(DCSVs)。在tam8突变体中,DCSVs的运输存在缺陷,荧光标记的蛋白质仅限于未运输的DCSVs。通过电穿孔标记的肌动蛋白或丙酮酸激酶证明了PRP1定位的特异性,二者均未定位到对接或未对接的囊泡。在野生型草履虫中,电穿孔后的His-PRP1在胞吐作用后从DCSVs解离,并随着新细胞器的形成而重新结合。突变的His-PRP1物种(S146A或S146E)不能在体外被P2钙依赖性激酶磷酸化。电穿孔后,这些分子保持细胞质并且不与DCSV缔合,而另一个PRP1丝氨酸残基(S560A)的突变既不影响DCSV的定位,也不影响磷酸化模式。因此,在这个异源系统中,PRP1的定位,运输和解离/重新结合可替代PFUS,从而支持了蛋白质是功能性直系同源物的结论。该测定法还确定了翻译后修饰,DCSV支架结合和胞吐作用所需的PFUS直系同源物(通过外推法在PFUS中为S138)内的战略性残基S146。

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