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天冬酰胺连接的糖基化途径糖基化步骤中的一种新酵母突变。形成一种含有两个葡萄糖残基的新型天冬酰胺连接寡糖。

A new yeast mutation in the glucosylation steps of the asparagine-linked glycosylation pathway. Formation of a novel asparagine-linked oligosaccharide containing two glucose residues.

作者信息

Runge K W, Robbins P W

出版信息

J Biol Chem. 1986 Nov 25;261(33):15582-90.

PMID:3536907
Abstract

We have isolated and characterized a new yeast mutation in the glucosylation steps of lipid-linked oligosaccharide biosynthesis, alg8-1. Cells carrying the alg8-1 mutation accumulate Glc1Man9GlcNAc2-lipid both in vivo and in vitro. We present evidence showing that the alg8-1 mutation blocks addition of the second alpha 1,3-linked glucose. alg8-1 cells transfer Glc1Man9GlcNAc2 to protein instead of the wild type oligosaccharide, Glc3Man9GlcNAc2. Pulse-chase studies indicate that the Glc1Man9GlcNAc2 transferred is processed more slowly than the wild type oligosaccharide. The yeast mutation gls1-1 lacks glucosidase I activity (Esmon, B., Esmon, P.C., and Schekman, R. (1984) J. Biol. Chem. 259, 10322-10327), the enzyme responsible for removing the alpha 1,2-linked glucose residues from protein-linked oligosaccharides. We demonstrate that gls1-1 cells contain glucosidase II activity (which removes alpha 1,3-linked glucose residues) and have constructed the alg8-1 gls1-1 haploid double mutant. The Glc1Man9GlcNAc2 oligosaccharide was trimmed normally in these cells, demonstrating that the alg8-1 oligosaccharide contained an alpha 1,3-linked glucose residue. A novel Glc2 compound was probably produced by the action of the biosynthetic enzyme that normally adds the alpha 1,2-linked glucose to lipid-linked Glc2Man9GlcNAc2. This enzyme may be able to slowly add alpha 1,2-linked glucose residue to protein-bound Glc1Man9GlcNAc2. The relevance of these findings to similar observations in other systems where glucose residues are added to asparagine-linked oligosaccharides and the possible significance of the reduced rate of oligosaccharide trimming in the alg mutants are discussed.

摘要

我们已经分离并鉴定了一种参与脂连寡糖生物合成糖基化步骤的新酵母突变体alg8-1。携带alg8-1突变的细胞在体内和体外都会积累Glc1Man9GlcNAc2-脂。我们提供的证据表明,alg8-1突变会阻止第二个α1,3连接的葡萄糖的添加。alg8-1细胞将Glc1Man9GlcNAc2转移到蛋白质上,而不是野生型寡糖Glc3Man9GlcNAc2。脉冲追踪研究表明,转移的Glc1Man9GlcNAc2的加工速度比野生型寡糖慢。酵母突变体gls1-1缺乏葡糖苷酶I活性(埃斯蒙,B.,埃斯蒙,P.C.,和谢克曼,R.(1984年)《生物化学杂志》259,10322 - 10327),该酶负责从蛋白质连接的寡糖中去除α1,2连接的葡萄糖残基。我们证明gls1-1细胞含有葡糖苷酶II活性(去除α1,3连接的葡萄糖残基),并构建了alg8-1 gls1-1单倍体双突变体。在这些细胞中,Glc1Man9GlcNAc2寡糖被正常修剪,这表明alg8-1寡糖含有一个α1,3连接的葡萄糖残基。一种新的Glc2化合物可能是由通常将α1,2连接的葡萄糖添加到脂连Glc2Man9GlcNAc2的生物合成酶的作用产生的。这种酶可能能够缓慢地将α1,2连接的葡萄糖残基添加到与蛋白质结合的Glc1Man9GlcNAc2上。讨论了这些发现与其他系统中类似观察结果的相关性,即在这些系统中葡萄糖残基被添加到天冬酰胺连接的寡糖上,以及alg突变体中寡糖修剪速率降低的可能意义。

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A new yeast mutation in the glucosylation steps of the asparagine-linked glycosylation pathway. Formation of a novel asparagine-linked oligosaccharide containing two glucose residues.天冬酰胺连接的糖基化途径糖基化步骤中的一种新酵母突变。形成一种含有两个葡萄糖残基的新型天冬酰胺连接寡糖。
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