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酵母VPS17基因编码一种可溶性液泡水解酶分选所需的膜相关蛋白。

The yeast VPS17 gene encodes a membrane-associated protein required for the sorting of soluble vacuolar hydrolases.

作者信息

Köhrer K, Emr S D

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

J Biol Chem. 1993 Jan 5;268(1):559-69.

PMID:8416961
Abstract

vps17 mutants missort and secrete several vacuolar hydrolases. To analyze the role of the VPS17 gene in vacuolar protein delivery, we have cloned this gene by complementation of the vacuolar protein sorting defects of a vps17-5 mutant. Disruption of the VPS17 gene had no effect on the viability of haploid yeast cells, although they show an obvious defect in vacuolar morphology. vps17-disrupted cells contain numerous small vacuole-like compartments and also exhibit a severe defect in the sorting of carboxypeptidase Y (CPY), a soluble vacuolar hydrolase. 95% of CPY is missorted and secreted from the mutant cells. Vacuolar sorting of two other soluble hydrolases, proteinase A and proteinase B, is also affected, but to a lesser extent. Delivery and maturation of the vacuolar membrane protein alkaline phosphatase does not appear to be affected in a delta vps17 strain. The DNA sequence of the VPS17 clone indicates that the gene encodes a 551-amino-acid protein with a calculated molecular mass of 63.1 kDa. The protein sequence is hydrophilic and contains no obvious N-terminal signal sequence or hydrophobic membrane-spanning domains, indicating that the Vps17p does not enter the secretory pathway. Using a Vps17p-specific polyclonal antiserum, we have demonstrated that the Vps17 protein is not modified with N-linked carbohydrates at any of its four potential N-linked glycosylation sites. The Vps17 protein, however, fractionates to a particulate fraction after centrifugation at 100,000 x g. Vps17p can be released from this particulate fraction by treatment with either Triton X-100 or urea, indicating that the Vps17p is peripherally associated with a crude membrane fraction. Based on these results, we propose that the Vps17p functions on the cytoplasmic surface of some intracellular organelle, possibly the Golgi complex or an intermediate in Golgi to vacuole transport, to facilitate the sorting and delivery of soluble vacuolar hydrolases. Vacuolar membrane protein traffic, however, appears to occur by a mechanism that is independent of Vps17p function.

摘要

Vps17突变体对几种液泡水解酶进行错误分选并分泌。为了分析VPS17基因在液泡蛋白运输中的作用,我们通过互补vps17 - 5突变体的液泡蛋白分选缺陷来克隆该基因。VPS17基因的破坏对单倍体酵母细胞的活力没有影响,尽管它们在液泡形态上表现出明显缺陷。Vps17基因破坏的细胞含有许多小的液泡样区室,并且在羧肽酶Y(CPY,一种可溶性液泡水解酶)的分选上也表现出严重缺陷。95%的CPY在突变细胞中被错误分选并分泌。另外两种可溶性水解酶蛋白酶A和蛋白酶B的液泡分选也受到影响,但程度较小。液泡膜蛋白碱性磷酸酶的运输和成熟在vps17缺失菌株中似乎未受影响。VPS17克隆的DNA序列表明该基因编码一个551个氨基酸的蛋白质,计算分子量为63.1 kDa。该蛋白质序列是亲水性的,并且没有明显的N端信号序列或疏水性跨膜结构域,这表明Vps17p不进入分泌途径。使用Vps17p特异性多克隆抗血清,我们证明Vps17蛋白在其四个潜在的N - 连接糖基化位点中的任何一个都没有被N - 连接碳水化合物修饰。然而,Vps17蛋白在100,000×g离心后会分离到颗粒部分。通过用Triton X - 100或尿素处理,可以从这个颗粒部分释放Vps17p,这表明Vps17p与粗膜部分是外周结合的。基于这些结果,我们提出Vps17p在某些细胞内细胞器的细胞质表面发挥作用,可能是高尔基体复合体或高尔基体到液泡运输的中间体,以促进可溶性液泡水解酶的分选和运输。然而,液泡膜蛋白运输似乎是通过一种独立于Vps17p功能的机制发生的。

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