首页> 外文期刊>Journal of cell biology >Golgi and vacuolar membrane proteins reach the vacuole in vps1 mutant yeast cells via the plasma membrane.
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Golgi and vacuolar membrane proteins reach the vacuole in vps1 mutant yeast cells via the plasma membrane.

机译:高尔基体和液泡膜蛋白通过质膜到达vps1突变酵母细胞中的液泡。

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The Vps1 protein of Saccharomyces cerevisiae is an 80-kD GTPase associated with the Golgi apparatus. Vps1p appears to play a direct role in the retention of late Golgi membrane proteins, which are mislocalized to the vacuolar membrane in its absence. The pathway by which late Golgi and vacuolar membrane proteins reach the vacuole in vps1 delta mutants was investigated by analyzing transport of these proteins in vps1 delta cells that also contained temperature sensitive mutations in either the SEC4 or END4 genes, which are required for a late step in secretion and the internalization step of endocytosis, respectively. Not only was vacuolar transport of a Golgi membrane protein blocked in the vps1 delta sec4-ts and vps1 delta end4-ts double mutant cells at the non-permissive temperature but vacuolar delivery of the vacuolar membrane protein, alkaline phosphatase was also blocked in these cells. Moreover, both proteins expressed in the vps1 delta end4-ts cells at the elevated temperature could be detected on the plasma membrane by a protease digestion assay indicating that these proteins are transported to the vacuole via the plasma membrane in vps1 mutant cells. These data strongly suggest that a loss of Vps1p function causes all membrane traffic departing from the late Golgi normally destined for the prevacuolar compartment to instead be diverted to the plasma membrane. We propose a model in which Vps1p is required for formation of vesicles from the late Golgi apparatus that carry vacuolar and Golgi membrane proteins bound for the prevacuolar compartment.
机译:酿酒酵母的Vps1蛋白是与高尔基体有关的80 kD GTPase。 Vps1p似乎在晚期高尔基体膜蛋白的保留中起直接作用,后者在不存在的情况下会错误地定位在液泡膜上。通过分析vps1三角洲细胞中这些蛋白质的转运来研究晚期高尔基体和液泡膜蛋白到达液泡的途径,这些蛋白质还包含SEC4或END4基因中的温度敏感突变,这是后期步骤所必需的分别在分泌和内吞作用的内在化过程中发挥作用。在非允许温度下,不仅vps1 delta sec4-ts和vps1 delta end4-ts双突变细胞中的高尔基膜蛋白的液泡运输受到阻滞,而且液泡膜蛋白的液泡运输,碱性磷酸酶也被这些细胞阻滞。此外,可以通过蛋白酶消化测定法在质膜上检测到在高温下在vps1 delta end4-ts细胞中表达的两种蛋白质,表明这些蛋白质通过vps1突变细胞中的质膜转运至液泡。这些数据有力地表明,Vps1p功能的丧失会导致所有通常从晚期高尔基体流出的膜运输原本准备进入前真空腔室,而是转移至质膜。我们提出了一个模型,其中从晚期高尔基体形成囊泡需要Vps1p,该囊泡携带液泡和结合到前血管腔的液泡膜和高尔基膜蛋白。

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