Nakazawa K, Furukawa K, Kobata A, Narimatsu H
Department of Microbiology, Keio University School of Medicine, Tokyo, Japan.
Eur J Biochem. 1991 Mar 14;196(2):363-8. doi: 10.1111/j.1432-1033.1991.tb15825.x.
We inserted a full-length murine cDNA, which had been isolated from F9 embryonal carcinoma cells by using a bovine lactose synthetase A protein cDNA as a probe, in a mammalian expression vector (pCMGT1) and expressed it in COS-1 cells to characterize the pCMGT1-directed enzyme. The galactosyltransferase activity toward asialo-agalacto-transferrin (AsAg-Tf) in the pCMGT1-transfected cells was approximately eightfold higher than that in mock- or non-transfected cells. In contrast, no difference was observed in the specific activity of galactose transfer between pCMGT1-transfected cells and mock- or non-transfected cells when asialo-ovine submaxillary mucin were used as an acceptor. Since almost all [3H]galactose incorporated into the AsAg-Tf was released by digestion with streptococcal beta-galactosidase, most of the linkage created by this enzyme was in the Gal beta 1-4GlcNAc group. The acceptor specificity of the pCMGT1-directed enzyme was changed from N-acetylglucosamine to glucose by adding alpha-lactalbumin in the reaction mixture. Alpha-Lactalbumin also partially inhibited the galactose transfer to AsAg-Tf. The kinetic study revealed that the apparent Km values of the pCMGT1-directed enzyme for N-acetylglucosamine, AsAg-Tf and UDP-Gal are 2 mM, 60 microM and 24 microM, respectively. These results indicated that the murine cDNA isolated from F9 cells encodes an active enzyme which catalyzes not only the lactose synthesis but also the transfer of galactose to N-acetylglucosamine residues of Asn-linked sugar chains of glycoproteins in a beta 1-4 linkage.
我们将一个全长鼠源cDNA(通过使用牛乳糖合成酶A蛋白cDNA作为探针从F9胚胎癌细胞中分离得到)插入到一个哺乳动物表达载体(pCMGT1)中,并在COS-1细胞中进行表达,以表征pCMGT1指导的酶。在pCMGT1转染的细胞中,针对去唾液酸-去半乳糖转铁蛋白(AsAg-Tf)的半乳糖基转移酶活性比在空载体转染或未转染的细胞中高约八倍。相比之下,当使用去唾液酸-羊颌下粘蛋白作为受体时,pCMGT1转染的细胞与空载体转染或未转染的细胞之间在半乳糖转移的比活性上未观察到差异。由于几乎所有掺入到AsAg-Tf中的[3H]半乳糖都可通过用链球菌β-半乳糖苷酶消化而释放,因此该酶形成的大多数连接都在Galβ1-4GlcNAc基团中。通过在反应混合物中添加α-乳白蛋白,pCMGT1指导的酶的受体特异性从N-乙酰葡糖胺变为葡萄糖。α-乳白蛋白也部分抑制了半乳糖向AsAg-Tf的转移。动力学研究表明,pCMGT1指导的酶对N-乙酰葡糖胺、AsAg-Tf和UDP-Gal的表观Km值分别为2 mM、60 μM和24 μM。这些结果表明,从F9细胞中分离得到的鼠源cDNA编码一种活性酶,该酶不仅催化乳糖合成,还催化半乳糖以β1-4连接转移到糖蛋白Asn连接糖链的N-乙酰葡糖胺残基上。