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酵母高尔基体的功能区室由sec7突变所界定。

Functional compartments of the yeast Golgi apparatus are defined by the sec7 mutation.

作者信息

Franzusoff A, Schekman R

机构信息

Department of Biochemistry, University of California, Berkeley 94720.

出版信息

EMBO J. 1989 Sep;8(9):2695-702. doi: 10.1002/j.1460-2075.1989.tb08410.x.

Abstract

The role of the SEC7 gene product in yeast intercompartmental protein transport was examined. A spectrum of N-linked oligosaccharide structures, ranging from core to nearly complete outer chain carbohydrate, was observed on glycoproteins accumulated in secretion-defective sec7 mutant cells. Terminal alpha 1-3-linked outer chain mannose residues failed to be added to N-linked glycoproteins in sec7 cells at the restrictive temperature. These results suggest that outer chain glycosyl modifications do not occur within a single compartment. Additional evidence consistent with subdivision of the yeast Golgi apparatus came from a cell-free glycoprotein transport reaction in which wild-type membranes sustained outer chain carbohydrate growth up to, but not including, addition of alpha 1-3 mannose residues. Golgi apparatus compartments may specialize in addition of distinct outer chain determinants. The SEC7 gene product was suggested to regulate protein transport between and from functional compartments of the yeast Golgi apparatus.

摘要

研究了SEC7基因产物在酵母细胞内蛋白质转运中的作用。在分泌缺陷型sec7突变细胞中积累的糖蛋白上观察到了一系列N-连接寡糖结构,从核心结构到几乎完整的外链碳水化合物。在限制温度下,sec7细胞中N-连接糖蛋白上未能添加末端α1-3连接的外链甘露糖残基。这些结果表明外链糖基修饰并非在单个区室中发生。与酵母高尔基体细分相一致的其他证据来自无细胞糖蛋白转运反应,其中野生型膜能够使外链碳水化合物生长至添加α1-3甘露糖残基之前,但不包括该步骤。高尔基体区室可能专门负责添加不同的外链决定簇。研究表明SEC7基因产物可调节酵母高尔基体功能区室之间以及进出功能区室的蛋白质转运。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c78/401276/ef4a9d3e37ec/emboj00133-0242-a.jpg

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