Prakash C, Katial A, Vijay I K
J Bacteriol. 1983 Feb;153(2):895-902. doi: 10.1128/jb.153.2.895-902.1983.
The lipid-linked oligosaccharide Glc3-Man9(GlcNAc)2 (Glc, glucose; Man, mannose; GlcNAc, N-acetylglucosamine) serves as a precursor for the biosynthesis of the inner core portion of the asparagine-linked polysaccharide of Saccharomyces cerevisiae mannoproteins. It has been shown previously that incubation of a microsomal preparation from this organism with UDP-N-acetylglucosamine and GDP-[14C]mannose gives rise to a series of lipid-linked oligosaccharides of the general structure Mann(GlcNAc)2, with n from 1 to 9. A structural characterization of Man1- to Man5(GlcNAc)2 oligosaccharides indicated that the major structures among these were identical to the intermediates proposed for the biosynthesis of animal glycoproteins (C. Prakash and I. K. Vijay, Biochemistry 21:4810-4818, 1982). In the present study, the structural characterization of the Man6- through Man9(GlcNAc)2 species was conducted. The Man6- through Man8(GlcNAc)2 species have two isomers, whereas Man9(GlcNAc)2 is monoisomeric. One isomer each of Man6- through Man8(GlcNAc)2 and the monoisomeric Man9(GlcNAc)2 are identical to the intermediates for the biosynthesis of asparagine-linked glycoproteins in animal systems. It is proposed that the steps of the lipid-linked assembly of the carbohydrate precursor for S. cerevisiae mannoproteins are identical to those of the major pathway in animal systems. A lack of acceptor substrate specificity by the mannosyltransferases, as observed with in vitro studies with animal systems, also might be responsible for the biosynthesis of multiple isomers reported here.
脂质连接寡糖Glc3-Man9(GlcNAc)2(Glc,葡萄糖;Man,甘露糖;GlcNAc,N-乙酰葡糖胺)作为酿酒酵母甘露糖蛋白中天冬酰胺连接多糖内核部分生物合成的前体。先前已表明,将该生物体的微粒体制剂与UDP-N-乙酰葡糖胺和GDP-[14C]甘露糖一起温育会产生一系列一般结构为Mann(GlcNAc)2的脂质连接寡糖,其中n为1至9。对Man1-至Man5(GlcNAc)2寡糖的结构表征表明,其中的主要结构与动物糖蛋白生物合成中提出的中间体相同(C. Prakash和I. K. Vijay,《生物化学》21:4810-4818,1982)。在本研究中,对Man6-至Man9(GlcNAc)2种类进行了结构表征。Man6-至Man8(GlcNAc)2种类有两种异构体,而Man9(GlcNAc)2是单异构体。Man6-至Man8(GlcNAc)2各有一种异构体以及单异构体Man9(GlcNAc)2与动物系统中天冬酰胺连接糖蛋白生物合成的中间体相同。有人提出,酿酒酵母甘露糖蛋白碳水化合物前体的脂质连接组装步骤与动物系统中的主要途径相同。如在动物系统的体外研究中所观察到的,甘露糖基转移酶缺乏受体底物特异性也可能是此处报道的多种异构体生物合成的原因。