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酵母中的糖蛋白生物合成:内质网Man9加工α-甘露糖苷酶的纯化与特性分析

Glycoprotein biosynthesis in yeast: purification and characterization of the endoplasmic reticulum Man9 processing alpha-mannosidase.

作者信息

Ziegler F D, Trimble R B

机构信息

Division of Clinical Sciences, Wadsworth Center for Laboratories and Research, New York State Department of Health, Albany 12201-0509.

出版信息

Glycobiology. 1991 Dec;1(6):605-14. doi: 10.1093/glycob/1.6.605.

Abstract

Saccharomyces cerevisiae Man9-alpha-mannosidase, responsible for trimming Man9GlcNAc2 in the endoplasmic reticulum to Man8GlcNAc2, the substrate for oligosaccharide elongation, has been purified to homogeneity from stabilized microsomal membranes without employing autolytic digestion. The activity was solubilized by the zwitterionic detergent, 3-[(3-cholamidopropyl)dimethyl ammonio]-1-propanesulphonate (CHAPS), whose presence was necessary for maximal activity. Purification included Q-Sepharose ion-exchange chromatography, preparative isoelectric focusing and HPLC gel filtration on TSK 3000 matrix. Overall purification from post-nuclear supernatants was estimated to be 110,000-fold with a 50% recovery of activity. The purified enzyme hydrolysed Man9GlcNAc1,2 from thyroglobulin or oligosaccharide-lipid, but not invertase Man9GlcNAc, Man1 alpha 2Man1 alpha OCH3 or p-nitrophenyl-alpha-D-mannopyranoside. Conversion of thyroglobulin Man9GlcNAc to Man8GlcNAc was linear with time and enzyme concentration, with an apparent Km of 0.2 mM and a specific activity of 220 IU/mg. Glc3Man9GlcNAc2 from oligosaccharide-lipid was as good a substrate as Man9GlcNAc, but the lipid-linked Man7GlcNAc2 isomer was hydrolysed at only 10% of this rate. Hydrolysis of defined isomers of IgM and bovine thyroglobulin Man6,7,8GlcNAc indicated that, for maximal alpha 1,2-mannosidase activity, only the alpha 1,2-linked terminal mannoses on the alpha 3 branch of the Man9GlcNAc precursor were dispensable. Isomers lacking the terminal alpha 1,2-linked mannose on the alpha 6 branch were hydrolysed at only approximately 10% of the maximal rate. The enzyme exhibited a pI of 5.3 and a pH optimum at 6.5. Sodium dodecyl sulphate-polyacrylamide gel electrophoresis in the absence of reducing agents gave a single sharp band at 66 kDa, while in the presence of beta-mercaptoethanol equimolar amounts of two peptides, one of 44 kDa and one of 23 kDa, were obtained. Sizing on Sephacryl SF300, Superose 12 and TSK 3000 provided a holoenzyme mol. wt of 60-68 kDa, indicating that the isolated active form of the Man9-alpha-mannosidase was composed of one each of the sulphydryl-bonded dissimilar peptides. The enzyme bound to concanavalin A (ConA)-Sepharose and was eluted with alpha-methylmannoside, indicating the presence of high-mannose oligosaccharides. The Man9-alpha-mannosidase required low levels of Ca2+, which could be removed by EGTA. Activity was restored by Ca2+ or Zn2+, but not by Mg2+ or Mn2+.

摘要

酿酒酵母的Man9-α-甘露糖苷酶负责在内质网中将Man9GlcNAc2修剪为Man8GlcNAc2,后者是寡糖延伸的底物。该酶已从稳定的微粒体膜中纯化至同质,且未采用自溶消化法。其活性可通过两性离子去污剂3-[(3-胆酰胺丙基)二甲基铵]-1-丙烷磺酸盐(CHAPS)溶解,CHAPS的存在对最大活性而言是必需的。纯化过程包括Q-Sepharose离子交换色谱、制备性等电聚焦以及在TSK 3000基质上进行的HPLC凝胶过滤。从核后上清液的总体纯化倍数估计为110,000倍,活性回收率为50%。纯化后的酶可水解甲状腺球蛋白或寡糖脂质中的Man9GlcNAc1,2,但不能水解转化酶Man9GlcNAc、Man1α2Man1αOCH3或对硝基苯基-α-D-甘露吡喃糖苷。甲状腺球蛋白Man9GlcNAc向Man8GlcNAc的转化与时间和酶浓度呈线性关系,表观Km为0.2 mM,比活性为220 IU/mg。寡糖脂质中的Glc3Man9GlcNAc2与Man9GlcNAc一样是良好的底物,但脂质连接的Man7GlcNAc2异构体的水解速率仅为此速率的10%。对IgM和牛甲状腺球蛋白Man6,7,8GlcNAc的特定异构体的水解表明,对于最大的α1,2-甘露糖苷酶活性,只有Man9GlcNAc前体α3分支上的α1,2-连接的末端甘露糖是可去除的。在α6分支上缺乏末端α1,2-连接甘露糖的异构体的水解速率仅为最大速率的约10%。该酶的pI为5.3,最适pH为6.5。在不存在还原剂的情况下进行的十二烷基硫酸钠-聚丙烯酰胺凝胶电泳在66 kDa处给出一条单一的清晰条带,而在存在β-巯基乙醇的情况下,得到等摩尔量的两种肽,一种为44 kDa,另一种为23 kDa。在Sephacryl SF300、Superose 12和TSK 3000上进行的尺寸排阻分析得出全酶分子量为60 - 68 kDa,表明分离出的Man9-α-甘露糖苷酶的活性形式由通过巯基键连接的不同肽各一个组成。该酶与伴刀豆球蛋白A(ConA)-琼脂糖结合,并用α-甲基甘露糖苷洗脱,表明存在高甘露糖寡糖。Man9-α-甘露糖苷酶需要低水平的Ca2+,其可被EGTA去除。Ca2+或Zn2+可恢复活性,但Mg2+或Mn2+不能。

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