Huffaker T C, Robbins P W
Proc Natl Acad Sci U S A. 1983 Dec;80(24):7466-70. doi: 10.1073/pnas.80.24.7466.
The synthesis of asparagine-linked oligosaccharides involves the formation of a lipid-linked precursor oligosaccharide that has the composition Glc3Man9GlcNAc2. We have used a [3H]mannose suicide selection to obtain mutants in yeast that are blocked in the synthesis of this precursor oligosaccharide. The alg1 mutant accumulated lipid-linked GlcNAc2, alg2 mutants accumulated Man1-2GlcNAc2, alg3 mutants accumulated Man5GlcNAc2, alg4 mutants accumulated Man1-8GlcNAc2, and alg5 and alg6 mutants accumulated Man9GlcNAc2. Some of these mutants appeared to transfer oligosaccharides other than Glc3Man9GlcNAc2 from the lipid carrier to invertase. These aberrant protein-linked oligosaccharides were processed by the addition of outer chain residues in the alg3, alg5, and alg6 mutants. There was virtually no outer chain addition in the alg2 and alg4 mutants. alg4 was the only mutant that failed to secrete invertase.
天冬酰胺连接的寡糖的合成涉及一种脂质连接的前体寡糖的形成,其组成为Glc3Man9GlcNAc2。我们使用了[3H]甘露糖自杀筛选法来获得酵母中在这种前体寡糖合成过程中受阻的突变体。alg1突变体积累脂质连接的GlcNAc2,alg2突变体积累Man1-2GlcNAc2,alg3突变体积累Man5GlcNAc2,alg4突变体积累Man1-8GlcNAc2,而alg5和alg6突变体积累Man9GlcNAc2。其中一些突变体似乎将除Glc3Man9GlcNAc2之外的寡糖从脂质载体转移至转化酶。这些异常的蛋白质连接的寡糖在alg3、alg5和alg6突变体中通过添加外链残基进行加工。在alg2和alg4突变体中几乎没有外链添加。alg4是唯一未能分泌转化酶的突变体。