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液泡蛋白分选受体Vps10p从内体到高尔基体的回收需要VPS29、VPS30和VPS35基因产物的功能。

Endosome to Golgi retrieval of the vacuolar protein sorting receptor, Vps10p, requires the function of the VPS29, VPS30, and VPS35 gene products.

作者信息

Seaman M N, Marcusson E G, Cereghino J L, Emr S D

机构信息

Division of Cellular and Molecular Medicine, University of California, San Diego, School of Medicine, La Jolla 92093-0668, USA.

出版信息

J Cell Biol. 1997 Apr 7;137(1):79-92. doi: 10.1083/jcb.137.1.79.

Abstract

Mutations in the S. cerevisiae VPS29 and VPS30 genes lead to a selective protein sorting defect in which the vacuolar protein carboxypeptidase Y (CPY) is missorted and secreted from the cell, while other soluble vacuolar hydrolases like proteinase A (PrA) are delivered to the vacuole. This phenotype is similar to that seen in cells with mutations in the previously characterized VPS10 and VPS35 genes. Vps10p is a late Golgi transmembrane protein that acts as the sorting receptor for soluble vacuolar hydrolases like CPY and PrA, while Vps35p is a peripheral membrane protein which cofractionates with membranes enriched in Vps10p. The sequences of the VPS29, VPS30, and VPS35 genes do not yet give any clues to the functions of their products. Each is predicted to encode a hydrophilic protein with homologues in the human and C. elegans genomes. Interestingly, mutations in the VPS29, VPS30, or VPS35 genes change the subcellular distribution of the Vps10 protein, resulting in a shift of Vps10p from the Golgi to the vacuolar membrane. The route that Vps10p takes to reach the vacuole in a vps35 mutant does not depend upon Sec1p mediated arrival at the plasma membrane but does require the activity of the pre-vacuolar endosomal t-SNARE, Pep12p. A temperature conditional allele of the VPS35 gene was generated and has been found to cause missorting/secretion of CPY and also Vps10p to mislocalize to a vacuolar membrane fraction at the nonpermissive temperature. Vps35p continues to cofractionate with Vps10p in vps29 mutants, suggesting that Vps10p and Vps35p may directly interact. Together, the data indicate that the VPS29, VPS30, and VPS35 gene products are required for the normal recycling of Vps10p from the prevacuolar endosome back to the Golgi where it can initiate additional rounds of vacuolar hydrolase sorting.

摘要

酿酒酵母VPS29和VPS30基因的突变会导致一种选择性蛋白质分选缺陷,即液泡蛋白羧肽酶Y(CPY)被错误分选并分泌到细胞外,而其他可溶性液泡水解酶如蛋白酶A(PrA)则被转运到液泡中。这种表型与先前鉴定的VPS10和VPS35基因发生突变的细胞中观察到的表型相似。Vps10p是一种晚期高尔基体跨膜蛋白,作为CPY和PrA等可溶性液泡水解酶的分选受体,而Vps35p是一种外周膜蛋白,与富含Vps10p富集的膜共分离。VPS29、VPS30和VPS35基因的序列尚未为其产物的功能提供任何线索。预计每个基因都编码一种亲水性蛋白质,在人类和秀丽隐杆线虫基因组中具有同源物。有趣的是,VPS29、VPS30或VPS35基因的突变会改变Vps10蛋白的亚细胞分布,导致Vps10p从高尔基体转移到液泡膜。在vps35突变体中,Vps10p到达液泡的途径不依赖于Sec1p介导的到达质膜,但确实需要液泡前内体t-SNARE Pep12p的活性。产生了VPS35基因的温度条件等位基因,发现在非允许温度下会导致CPY的错误分选/分泌,并且Vps10p也会错误定位到液泡膜部分。在vps29突变体中,Vps35p继续与Vps10p共分离,表明Vps10p和Vps35p可能直接相互作用。总之这些数据表明,VPS29、VPS30和VPS35基因产物是Vps10p从液泡前内体正常循环回到高尔基体所必需的,在高尔基体中它可以启动额外轮次的液泡水解酶分选。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a964/2139870/09b3cc6d9e74/JCB.seaman1.jpg

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