Koszdin K L, Bowen B R
CIBA-GEIGY Corp., Summit, NJ 07901.
Biochem Biophys Res Commun. 1992 Aug 31;187(1):152-7. doi: 10.1016/s0006-291x(05)81472-x.
The polymerase chain reaction was used to amplify a novel fucosyltransferase cDNA (FucT-VI) from A431 and from HL60 cells. The amplified cDNA has a high degree of sequence identity to FucT-V and to FucT-III, and a much lower level of similarity to FucT-IV. Transfection of the FucT-VI gene into mammalian cells confers alpha-1,3 fucosyltransferase activity to the cells, resulting in cell surface expression of Lewis x and sialyl-Lewis x carbohydrates. In contrast to FucT-IV activity, FucT-VI catalyzes the transfer of fucose from GDP-beta-fucose to alpha-2,3 sialylated substrates. The substrate specificity of the FucT-VI gene product suggests that FucT-VI may be an enzyme involved in the biosynthesis of the E-Selectin ligand, sialyl-Lewis x, in myeloid cells.
利用聚合酶链反应从A431细胞和HL60细胞中扩增出一种新型岩藻糖基转移酶cDNA(FucT-VI)。扩增得到的cDNA与FucT-V和FucT-III具有高度的序列同一性,与FucT-IV的相似性则低得多。将FucT-VI基因转染到哺乳动物细胞中可赋予细胞α-1,3岩藻糖基转移酶活性,导致细胞表面表达Lewis x和唾液酸化Lewis x碳水化合物。与FucT-IV活性相反,FucT-VI催化岩藻糖从GDP-β-岩藻糖转移至α-2,3唾液酸化底物。FucT-VI基因产物的底物特异性表明,FucT-VI可能是一种参与髓样细胞中E-选择素配体唾液酸化Lewis x生物合成的酶。