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mnn4和mnn6突变与酿酒酵母中O-连接寡糖的甘露糖基磷酸化的关系。

The involvement of mnn4 and mnn6 mutations in mannosylphosphorylation of O-linked oligosaccharide in yeast Saccharomyces cerevisiae.

作者信息

Nakayama K, Feng Y, Tanaka A, Jigami Y

机构信息

Molecular Biology Department, National Institute of Bioscience and Human Technology, Tsukuba, Ibaraki, Japan.

出版信息

Biochim Biophys Acta. 1998 Sep 16;1425(1):255-62. doi: 10.1016/s0304-4165(98)00078-6.

Abstract

The structure of O-linked acidic oligosaccharide from Saccharomyces cerevisiae was analyzed. The chitinase, exclusively O-glycosylated extracelluar protein, was purified from strains mnn1, mnn1 mnn4, mnn1 mnn6 and deltakre2 and the oligosaccharides were hydrolyzed by O-linked sugar chain specific hydrazinolysis. The mannosylphosphorylated mannotriose (M3-P-M) was detected in strain mnn1, but not in the other three strains (mnn1n mnn4, mnn1 mnn6 and deltakre2). alpha-Mannosidase treatment and matrix-assisted laser desorption ionization time-of-flight mass spectrometry of mannosylphosphorylated mannotriose revealed that mannosylphosphate was attached to a middle mannose of alpha-1,2-linked mannotriose. This result indicates that the mnn4 and mnn6 mutations affect the mannosylphosphorylation of O-linked oligosaccharide, together with that of N-linked oligosaccharide. The amount of mannosylphosphorylated mannotriose was 7% of total O-linked oligosaccharides (20% of neutral mannotriose) of chitinase in strain mnn1.

摘要

对酿酒酵母中O-连接酸性寡糖的结构进行了分析。几丁质酶是一种仅进行O-糖基化的细胞外蛋白,从mnn1、mnn1 mnn4、mnn1 mnn6和deltakre2菌株中纯化得到,寡糖通过O-连接糖链特异性肼解进行水解。在mnn1菌株中检测到了甘露糖基磷酸化的甘露三糖(M3-P-M),但在其他三个菌株(mnn1 mnn4、mnn1 mnn6和deltakre2)中未检测到。对甘露糖基磷酸化的甘露三糖进行α-甘露糖苷酶处理和基质辅助激光解吸电离飞行时间质谱分析表明,甘露糖基磷酸连接到α-1,2-连接的甘露三糖的中间甘露糖上。该结果表明,mnn4和mnn6突变会影响O-连接寡糖以及N-连接寡糖的甘露糖基磷酸化。在mnn1菌株中,甘露糖基磷酸化的甘露三糖的量占几丁质酶总O-连接寡糖的7%(中性甘露三糖的20%)。

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