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酿酒酵母och1、och1 mnn1和och1 mnn1 alg3突变体中N-连接寡糖的结构,这些突变体显示α-1,6-多聚甘露糖外链完全缺失。

Structure of the N-linked oligosaccharides that show the complete loss of alpha-1,6-polymannose outer chain from och1, och1 mnn1, and och1 mnn1 alg3 mutants of Saccharomyces cerevisiae.

作者信息

Nakanishi-Shindo Y, Nakayama K, Tanaka A, Toda Y, Jigami Y

机构信息

National Institute of Bioscience and Human Technology, Ibaraki, Japan.

出版信息

J Biol Chem. 1993 Dec 15;268(35):26338-45.

PMID:8253757
Abstract

The periplasmic invertase was purified from Saccharomyces cerevisiae och1::LEU2 disruptant cells (delta och1), which have a defect in elongation of the outer chain attached to the N-linked core oligosaccharides (Nakayama, K., Nagasu, T., Shimma, Y., Kuromatsu, J., and Jigami, Y. (1992) EMBO J. 11, 2511-2519). Structural analysis of the pyridylaminated (PA) neutral oligosaccharides released by hydrazinolysis and N-acetylation confirmed that the och1 mutation causes a complete loss of the alpha-1,6-polymannose outer chain, although the PA oligosaccharides (Man9GlcNAc2-PA and Man10GlcNAc2-PA), in which one or two alpha-1,3-linked mannose(s) attached to the endoplasmic reticulumn (ER)-form core oligosaccharide (Man8GlcNAc2) were also detected. Analysis of the delta och1 mnn1 strain oligosaccharides released from total cell mannoprotein revealed that the delta och1 mnn1 mutant eliminates the alpha-1,3-mannose attached to the core and accumulates predominantly a single ER-form oligosaccharide species (Man8GlcNAc2), suggesting a potential use of this strain as a host cell to produce glycoproteins containing mammalian high mannose type oligosaccharides. The delta och1 mnn1 alg3 mutants accumulated Man5GlcNAc2 and Man8GlcNAc2 in total cell mannoprotein, confirming the lack of outer chain addition to the incomplete corelike oligosaccharide and the leaky phenotype of the alg3 mutation. All the results suggest that the OCH1 gene encodes an alpha-1,6-mannosyltransferase that is functional in the initiation of alpha-1,6-polymannose outer chain addition to the N-linked core oligosaccharide (Man5GlcNAc2 and Man8GlcNAc2) in yeast.

摘要

周质转化酶是从酿酒酵母och1::LEU2缺失型细胞(delta och1)中纯化得到的,该细胞在与N-连接核心寡糖相连的外链延伸方面存在缺陷(中山,K.,长须,T.,岛间,Y.,黑松,J.,和 jigami,Y.(1992年)《欧洲分子生物学组织杂志》11,2511 - 2519)。对肼解和N - 乙酰化释放的吡啶氨基化(PA)中性寡糖的结构分析证实,och1突变导致α-1,6-多聚甘露糖外链完全缺失,尽管也检测到了PA寡糖(Man9GlcNAc2 - PA和Man10GlcNAc2 - PA),其中一个或两个与内质网(ER)形式核心寡糖(Man8GlcNAc2)相连的α-1,3-连接的甘露糖。对从总细胞甘露糖蛋白释放的delta och1 mnn1菌株寡糖的分析表明,delta och1 mnn1突变体消除了与核心相连的α-1,3-甘露糖,并主要积累单一的ER形式寡糖种类(Man8GlcNAc2),这表明该菌株有可能用作宿主细胞来生产含有哺乳动物高甘露糖型寡糖的糖蛋白。delta och1 mnn1 alg3突变体在总细胞甘露糖蛋白中积累了Man5GlcNAc2和Man8GlcNAc2,证实了不完全的核心样寡糖缺乏外链添加以及alg3突变的渗漏表型。所有结果表明,OCH1基因编码一种α-1,6-甘露糖基转移酶,该酶在酵母中对N-连接核心寡糖(Man5GlcNAc2和Man8GlcNAc2)添加α-1,6-多聚甘露糖外链的起始过程中发挥作用。

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