Norén K, Hansen G H, Clausen H, Norén O, Sjöström H, Vogel L K
Biochemistry Laboratory C, Department of Oral Pathology, The Panum Institute, Blegdamsvej 3, Copenhagen N, DK-2200, Denmark.
Exp Cell Res. 1997 Feb 25;231(1):112-8. doi: 10.1006/excr.1996.3455.
In order to study the effects of the absence of O-glycosylation and modifications of N-glycosylation on a class II membrane protein, pig and human aminopeptidase N (CD13) were stably expressed in the ldl(D) cell line. This cell line carries a UDP-Gal/UDP-GalNAc-epimerase deficiency which blocks the conversion of glucose into galactose derivatives. Thus it is possible in the ldl(D) cell line to selectively block O-glycosylation by the omission of N-acetylgalactoseamine from the culture medium and to alter N-glycosylation by the omission of galactose. In this way selectively altered glycosylated forms of the glycoprotein aminopeptidase N can be synthesized and the effects of altered glycosylation can be studied. It is demonstrated that aminopeptidase N carries "mucin-type" O-glycans and that this is predominantly located in the stalk, which connects the catalytic headgroup to the membrane anchor. Normally glycosylated aminopeptidase N is present in the plasma membrane of the ldl(D) cells. This is also the case for the non-O-glycosylated and defectively N-glycosylated forms. This is in line with the finding that the intracellular transport APN is unaffected by the absence of O-glycosylation or by changes in N-glycosylation as the various glycosylated forms of aminopeptidase N are normally converted from the high-mannose form to the complex glycosylated form. Enzymatic activity is not influenced by the changes in glycosylation.
为了研究O-糖基化缺失和N-糖基化修饰对II类膜蛋白的影响,猪和人氨肽酶N(CD13)在ldl(D)细胞系中稳定表达。该细胞系存在UDP-半乳糖/UDP-N-乙酰半乳糖胺表异构酶缺陷,可阻断葡萄糖向半乳糖衍生物的转化。因此,在ldl(D)细胞系中,通过从培养基中省略N-乙酰半乳糖胺可以选择性地阻断O-糖基化,通过省略半乳糖可以改变N-糖基化。通过这种方式,可以合成糖蛋白氨肽酶N的选择性改变的糖基化形式,并研究糖基化改变的影响。结果表明,氨肽酶N带有“粘蛋白型”O-聚糖,且主要位于将催化头部与膜锚连接起来的柄部。正常糖基化的氨肽酶N存在于ldl(D)细胞的质膜中。非O-糖基化和N-糖基化缺陷的形式也是如此。这与以下发现一致,即细胞内转运的氨肽酶N不受O-糖基化缺失或N-糖基化变化的影响,因为氨肽酶N的各种糖基化形式通常从高甘露糖型转化为复杂糖基化型。酶活性不受糖基化变化的影响。