Liepkans V A, Razafimahaleo B, Gouyette A, Herrero-Zabaleta E, Burtin P
Biochem Biophys Res Commun. 1985 Sep 16;131(2):736-42. doi: 10.1016/0006-291x(85)91300-2.
Extracts of the human intestinal tumor cell line SW1116 were able to stimulate the incorporation of (14C) fucose from GDP-(14C) fucose into organically soluble glycolipid. The reaction required a purified glycolipid preparation from human meconium as lipid acceptor. The active glycolipid co-migrated with standard globoside on high performance thin-layer chromatography (HPTLC) and had molecular species (M + H) under fast-atom bombardment mass spectrometry of 1199, 1245 and 1269. Globoside itself was inactive and asialo GM1b had low activity. The radioactive products co-purified with Lewis a and Lewis b and co-migrated principally (60-90%) with Lewis b monoclonal antibody binding cellular glycolipids on HPTLC. Analysis of fucosidase digests suggested the presence of two different fucosyl-hexose linkages one of which was susceptible to cleavage. We conclude that the data are consistent with fucosylation of lactotetraosyl ceramide to Lewis a and Lewis b antigenic glycolipids.
人肠道肿瘤细胞系SW1116的提取物能够刺激GDP-(14C)岩藻糖中的(14C)岩藻糖掺入有机可溶性糖脂中。该反应需要以人胎粪中的纯化糖脂制剂作为脂质受体。活性糖脂在高效薄层色谱(HPTLC)上与标准红细胞糖苷脂共迁移,在快原子轰击质谱下分子质量为1199、1245和1269。红细胞糖苷脂本身无活性,脱唾液酸GM1b活性较低。放射性产物与Lewis a和Lewis b共纯化,在HPTLC上主要(60-90%)与Lewis b单克隆抗体结合细胞糖脂共迁移。岩藻糖苷酶消化分析表明存在两种不同的岩藻糖基-己糖连接,其中一种易被裂解。我们得出结论,数据与乳糖四糖神经酰胺岩藻糖基化形成Lewis a和Lewis b抗原性糖脂一致。