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一种分选连接蛋白-1同源物Vps5p与Vps17p形成复合物,是液泡蛋白分选受体循环利用所必需的。

A sorting nexin-1 homologue, Vps5p, forms a complex with Vps17p and is required for recycling the vacuolar protein-sorting receptor.

作者信息

Horazdovsky B F, Davies B A, Seaman M N, McLaughlin S A, Yoon S, Emr S D

机构信息

Department of Biochemistry, University of Texas Southwestern Medical Center, Dallas 75235-9038, USA.

出版信息

Mol Biol Cell. 1997 Aug;8(8):1529-41. doi: 10.1091/mbc.8.8.1529.

Abstract

A number of the Saccharomyces cerevisiae vacuolar protein-sorting (vps) mutants exhibit an altered vacuolar morphology. Unlike wild-type cells that contain 1-3 large vacuolar structures, the class B vps5 and vps17 mutant cells contain 10-20 smaller vacuole-like compartments. To explore the role of these VPS gene products in vacuole biogenesis, we cloned and sequenced VPS5 and characterized its protein products. The VPS5 gene is predicted to encode a very hydrophilic protein of 675 amino acids that shows significant sequence homology with mammalian sorting nexin-1. Polyclonal antiserum directed against the VPS5 gene product detects a single, cytoplasmic protein that is phosphorylated specifically on a serine residue(s). Subcellular fractionation studies indicate that Vps5p is associated peripherally with a dense membrane fraction distinct from Golgi, endosomal, and vacuolar membranes. This association was found to be dependent on the presence of another class B VPS gene product, Vps17p. Biochemical cross-linking studies demonstrated that Vps5p and Vps17p physically interact. Gene disruption experiments show that the VPS5 genes product is not essential for cell viability; however, cells carrying the null allele contain fragmented vacuoles and exhibit defects in vacuolar protein-sorting similar to vps17 null mutants. More than 95% of carboxypeptidase Y is secreted from these cells in its Golgi-modified p2 precursor form. Additionally, the Vps10p vacuolar protein-sorting receptor is mislocalized to the vacuole in vps5 mutant cells. On the basis of these and other observations, we propose that the Vps17p protein complex may participate in the intracellular trafficking of the Vps10p-sorting receptor, as well as other later-Golgi proteins.

摘要

许多酿酒酵母液泡蛋白分选(vps)突变体表现出液泡形态改变。与含有1 - 3个大液泡结构的野生型细胞不同,B类vps5和vps17突变体细胞含有10 - 20个较小的液泡样区室。为了探究这些VPS基因产物在液泡生物发生中的作用,我们克隆并测序了VPS5并对其蛋白质产物进行了表征。VPS5基因预计编码一种由675个氨基酸组成的非常亲水的蛋白质,该蛋白质与哺乳动物分选连接蛋白-1具有显著的序列同源性。针对VPS5基因产物的多克隆抗血清检测到一种单一的细胞质蛋白,该蛋白在一个丝氨酸残基上被特异性磷酸化。亚细胞分级分离研究表明,Vps5p在外周与一个不同于高尔基体、内体和液泡膜的致密膜部分相关联。发现这种关联依赖于另一种B类VPS基因产物Vps17p的存在。生化交联研究表明Vps5p和Vps17p发生物理相互作用。基因破坏实验表明,VPS5基因产物对细胞活力不是必需的;然而,携带无效等位基因的细胞含有碎片化的液泡,并表现出与vps17无效突变体类似的液泡蛋白分选缺陷。超过95%的羧肽酶Y以其高尔基体修饰的p2前体形式从这些细胞中分泌出来。此外,Vps10p液泡蛋白分选受体在vps5突变体细胞中定位错误到液泡中。基于这些及其他观察结果,我们提出Vps17p蛋白复合物可能参与Vps10p分选受体以及其他高尔基体晚期蛋白的细胞内运输。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4993/276174/def85df8fe22/mbc00007-0141-a.jpg

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