Kojima N, Tachida Y, Tsuji S
Molecular Glycobiology, Frontier Research Program, The Institute of Physical and Chemical Research (RIKEN), Wako, Saitama, 351-0198, Japan.
J Biochem. 1998 Oct;124(4):726-37. doi: 10.1093/oxfordjournals.jbchem.a022173.
To determine the effect of alpha1,6-linked fucose modification of N-glycans on the expression of polysialic acids (PSAs), the expression of PSAs in a fucose-lacking mutant of Chinese hamster ovary (CHO) cells, Lec13, was compared with that in CHO K1 cells. PSA synthase activity in these cells and the antennary structures of N-glycans associated with the neural adhesion molecule (NCAM), which is a major PSA-carrying glycoprotein, did not differ between the two types of cells. Metabolic labeling of cells with [3H]glucosamine for 48 h followed by immunoprecipitation with anti-PSA monoclonal antibodies revealed that the amount of labeled PSA-carrying glycoproteins obtained from Lec13 cells was 10-times less than that from K1 cells, although the incorporation of [3H]glucosamine into total extracts and NCAM was almost the same. In contrast, when cells were pulse labeled with [35S]methionine followed by a 1 h chase, there was not such a great difference in PSA-carrying protein synthesis between K1 and Lec13 cells. However, during a prolonged chase period, PSA-carrying proteins rapidly decreased in Lec13 cells, whereas those in K1 cells did not change. The degradation of PSA-carrying glycoproteins in Lec13 cells was partly prevented when the cells were grown in fucose-containing medium. Therefore, fucose modification of core N-glycans may affect the efficient expression of PSAs through the intracellular stability of PSA-carrying glycoproteins.
为了确定N-聚糖的α1,6-连接岩藻糖修饰对多唾液酸(PSA)表达的影响,将中国仓鼠卵巢(CHO)细胞的岩藻糖缺乏突变体Lec13中PSA的表达与CHO K1细胞中的进行了比较。这两种细胞中PSA合酶活性以及与神经粘附分子(NCAM)相关的N-聚糖的天线结构并无差异,NCAM是一种主要的携带PSA的糖蛋白。用[3H]葡萄糖胺对细胞进行48小时的代谢标记,然后用抗PSA单克隆抗体进行免疫沉淀,结果显示,从Lec13细胞中获得的携带标记PSA的糖蛋白量比从K1细胞中获得的少10倍,尽管[3H]葡萄糖胺掺入总提取物和NCAM中的量几乎相同。相反,当用[35S]甲硫氨酸对细胞进行脉冲标记,随后进行1小时的追踪时,K1细胞和Lec13细胞之间携带PSA的蛋白质合成没有如此大的差异。然而,在延长的追踪期内,Lec13细胞中携带PSA的蛋白质迅速减少,而K1细胞中的则没有变化。当细胞在含岩藻糖的培养基中生长时,Lec13细胞中携带PSA的糖蛋白的降解在一定程度上得到了抑制。因此,核心N-聚糖的岩藻糖修饰可能通过携带PSA的糖蛋白的细胞内稳定性来影响PSA的有效表达。