Lowe J B, Kukowska-Latallo J F, Nair R P, Larsen R D, Marks R M, Macher B A, Kelly R J, Ernst L K
Howard Hughes Medical Institute, University of Michigan Medical School, Ann Arbor 48109-0650.
J Biol Chem. 1991 Sep 15;266(26):17467-77.
We have used the human Lewis blood group fucosyltransferase cDNA and cross-hybridization procedures to isolate a human gene that encodes a distinct fucosyltransferase. Its DNA sequence predicts a type II transmembrane protein whose sequence is identical to 133 of 231 amino acids at corresponding positions within the catalytic domain of the Lewis fucosyltransferase. When expressed by transfection in cultured cell lines, this gene determines expression of a fucosyltransferase capable of efficiently utilizing N-acetyllactosamine to form the Lewis x determinant (Gal beta 1----4[Fuc alpha 1----3]GlcNAc). By contrast, biochemical and flow cytometry analyses suggest that the enzyme cannot efficiently utilize the type II acceptor NeuNAc alpha 2----3Gal beta 1----4GlcNAc, to form the sialyl Lewis x determinant. In Chinese hamster ovary cells, however, the enzyme can determine expression of the alpha 2----3-sialylated, alpha 1----3-fucosylated structure known as VIM-2, a putative oligosaccharide ligand for ELAM-1. Cell adhesion assays using VIM-2-positive, sialyl Lewis x-negative transfected Chinese hamster ovary cells indicate that surface expression of the VIM-2 determinant is not sufficient to confer ELAM-1-dependent adhesive properties upon the cells. These results demonstrate that substantial structural similarities can exist between mammalian glycosyltransferases with closely related enzymatic properties, thus facilitating isolation of their cognate genes by cross-hybridization methods. The results further suggest that cell surface expression of the VIM-2 determinant is not necessarily sufficient to mediate ELAM-1-dependent cell adhesion.
我们利用人类Lewis血型岩藻糖基转移酶cDNA和交叉杂交程序分离出一个编码独特岩藻糖基转移酶的人类基因。其DNA序列预测该基因编码一种II型跨膜蛋白,其序列与Lewis岩藻糖基转移酶催化结构域内相应位置的231个氨基酸中的133个氨基酸相同。当通过转染在培养细胞系中表达时,该基因决定了一种岩藻糖基转移酶的表达,这种酶能够有效地利用N-乙酰乳糖胺形成Lewis x决定簇(Galβ1----4[Fucα1----3]GlcNAc)。相比之下,生化和流式细胞术分析表明,该酶不能有效地利用II型受体NeuNAcα2----3Galβ1----4GlcNAc形成唾液酸化Lewis x决定簇。然而,在中国仓鼠卵巢细胞中,该酶可以决定一种称为VIM-2的α2----3-唾液酸化、α1----3-岩藻糖基化结构的表达,VIM-2是ELAM-1的一种假定寡糖配体。使用VIM-2阳性、唾液酸化Lewis x阴性的转染中国仓鼠卵巢细胞进行的细胞黏附试验表明,VIM-2决定簇的表面表达不足以赋予细胞ELAM-1依赖性黏附特性。这些结果表明,具有密切相关酶活性的哺乳动物糖基转移酶之间可能存在大量结构相似性,从而便于通过交叉杂交方法分离它们的同源基因。结果还进一步表明,VIM-2决定簇的细胞表面表达不一定足以介导ELAM-1依赖性细胞黏附。