Nakajima T, Ballou C E
Proc Natl Acad Sci U S A. 1975 Oct;72(10):3912-6. doi: 10.1073/pnas.72.10.3912.
Using appropriate yeast strains and exogenous acceptors, we have devised specific assays for four mannosyltransferase activities involved in biosynthesis of the carbohydrate outer chain of yeast mannoproteins. The assays utilize GDP-[14C]mannose as the donor and unlabeled oligosaccharides as the acceptors, the products being neutral radioactive oligosaccharides one mannose unit larger than the acceptors. The multiglycosyltransferase system from Saccharomyces cerevisiae was solubilized in Triton X-100 and urea and purified 100-fold. Free mannose is an acceptor for the alpha1 leads to 2-mannosyltransferase, the major product being alpha[14C]Man leads to 2Man. The alpha1 leads to 6-mannooligosaccharides serve as acceptors for both the alpha1 leads to 2- and alpha1 leads to 6-transferases, but the tetrasaccharide alphaMan leads to 3alphsMan leads to 2alphaMan is a specific acceptor for the latter enzyme and yields (see article). When reduced, this same tetrasaccharide serves as the acceptor for an alpha1 leads to 3-mannosyltransferase from Saccharomyces chevalieri, yielding a pentasaccharide with two terminal 1 leads to 3 linkages. Assay of the alpha1 leads to 3-transferase in S. cerevisiae utilizes reduced alpha1 leads to 2-mannotriose as the acceptor, the product being alpha[14C]Man leads to 3alphaMan leads to 2alphaMan leads to 2Mannitol. The multienzyme system works in concert to make "mannan" in a cell-free in vitro system.
利用合适的酵母菌株和外源性受体,我们设计了针对酵母甘露糖蛋白碳水化合物外链生物合成过程中四种甘露糖基转移酶活性的特异性检测方法。这些检测方法利用GDP-[14C]甘露糖作为供体,未标记的寡糖作为受体,产物是比受体大一个甘露糖单元的中性放射性寡糖。酿酒酵母的多糖基转移酶系统在 Triton X-100 和尿素中溶解,并纯化了 100 倍。游离甘露糖是α1→2-甘露糖基转移酶的受体,主要产物是α[14C]Man→2Man。α1→6-甘露寡糖是α1→2-和α1→6-转移酶的受体,但四糖αMan→3αMan→2αMan是后一种酶的特异性受体,并产生(见文章)。还原后,这种相同的四糖作为来自薛瓦酵母的α1→3-甘露糖基转移酶的受体,产生具有两个末端 1→3 连接的五糖。酿酒酵母中α1→3-转移酶的检测利用还原的α1→2-甘露三糖作为受体,产物是α[14C]Man→3αMan→2αMan→2甘露醇。在无细胞体外系统中,多酶系统协同作用以合成“甘露聚糖”。