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The Secretory Apparatus of an Ancient Eukaryote: Protein Sorting to Separate Export Pathways Occurs Before Formation of Transient Golgi-like Compartments

机译:古代真核生物的分泌器具:蛋白质分类以分离出口途径发生在瞬时高尔基样隔间形成之前。

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摘要

Transmission of the protozoan parasite Giardia intestinalis to vertebrate hosts presupposes the encapsulation of trophozoites into an environmentally resistant and infectious cyst form. We have previously shown that cyst wall proteins were faithfully sorted to large encystation-specific vesicles (ESVs), despite the absence of a recognizable Golgi apparatus. Here, we demonstrate that sorting to a second constitutively active pathway transporting variant-specific surface proteins (VSPs) to the surface depended on the cytoplasmic VSP tail. Moreover, pulsed endoplasmic reticulum (ER) export of chimeric reporters containing functional signals for both pathways showed that protein sorting was done at or very soon after export from the ER. Correspondingly, we found that a limited number of novel transitional ER-like structures together with small transport intermediates were generated during encystation. Colocalization of transitional ER regions and early ESVs with coat protein (COP) II and of maturing ESVs with COPI and clathrin strongly suggested that ESVs form by fusion of ER-derived vesicles and subsequently undergo maturation by retrograde transport. Together, the data supported the hypothesis that in Giardia, a primordial secretory apparatus is in operation by which proteins are sorted in the early secretory pathway, and the developmentally induced ESVs carry out at least some Golgi functions.
机译:原生动物寄生虫贾第鞭毛虫向脊椎动物宿主的传播以将滋养体封装成对环境具有抵抗力和传染性的囊肿形式为前提。我们以前已经表明,尽管缺乏可识别的高尔基体,但囊壁蛋白仍被忠实地分选到了大的入侵特定囊泡(ESV)。在这里,我们证明排序到第二个组成性主动途径将变体特异性表面蛋白(VSPs)转运到表面取决于细胞质VSP尾巴。此外,脉冲内质网(ER)包含两个途径的功能性信号的嵌合报告基因的出口表明蛋白质分选是在从ER出口时或出口后不久进行的。相应地,我们发现在侵入过程中产生了数量有限的新型过渡ER样结构以及小的运输中间体。过渡ER区和早期ESV与外壳蛋白(COP)II的共定位,以及成熟的ESV与COPI和网格蛋白的共定位,强烈建议ESV通过ER来源的囊泡融合形成,然后通过逆行运输进行成熟。总之,这些数据支持了以下假设:在贾第鞭毛虫中,一个原始的分泌设备正在运转,通过该设备可以在早期分泌途径中对蛋白质进行分类,并且发育诱导的ESV至少执行某些高尔基功能。

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