Zöllner O, Vestweber D
Institute of Cell Biology, ZMBE, University of Münster, D-48149 Münster, Germany.
J Biol Chem. 1996 Dec 20;271(51):33002-8. doi: 10.1074/jbc.271.51.33002.
The E-selectin ligand-1 (ESL-1) has recently been identified as the major ligand on mouse neutrophils using a recombinant antibody-like form of E-selectin as affinity probe. The remarkable selectivity with which ESL-1 can be affinity-isolated is unexplained. Since ESL-1 is endogenously expressed in Chinese hamster ovary (CHO) cells in a non-E-selectin binding form, which can become activated upon transfection of a fucosyltransferase (FucT), we analyzed various CHO cell clones, each overexpressing one of seven different fucosyltransferases, by affinity isolation experiments with E-selectin-IgG. Two of the cell lines were the regulatory CHO mutants LEC11 and LEC12, each overexpressing a different hamster FucT, while the five other clones were stably transfected with human FucTIII to -VII. A large panel of glycoproteins was affinity-isolated with E-selectin-IgG from LEC11 cells and FucTIII transfectants, demonstrating that many different glycoproteins can acquire ligand activity upon alpha(1,3)-fucosylation. In contrast, ESL-1 was almost exclusively isolated as the dominant glycoprotein ligand from LEC12 cells as well as from FucTIV and FucTVII transfectants and less selectively from FucTV and FucTVI transfectants. The selective generation of ligand activity correlated with the selective generation of the HECA452-reactive carbohydrate epitope, which is known to bind to E-selectin. These data suggest that, dependent on the type of fucosyltransferase, ESL-1 is a strongly preferred target molecule for the generation of E-selectin-binding carbohydrate modifications.
最近,使用重组抗体样形式的E-选择素作为亲和探针,E-选择素配体-1(ESL-1)已被确定为小鼠中性粒细胞上的主要配体。ESL-1能够被亲和分离的显著选择性尚无合理解释。由于ESL-1在中国仓鼠卵巢(CHO)细胞中以内源形式表达,且不与E-选择素结合,而在转染岩藻糖基转移酶(FucT)后可被激活,因此我们通过用E-选择素-IgG进行亲和分离实验,分析了各种CHO细胞克隆,每个克隆均过表达七种不同岩藻糖基转移酶中的一种。其中两个细胞系是调节性CHO突变体LEC11和LEC12,每个均过表达不同的仓鼠FucT,而其他五个克隆则被稳定转染了人FucTIII至VII。用E-选择素-IgG从LEC11细胞和FucTIII转染体中亲和分离出一大组糖蛋白,表明许多不同的糖蛋白在α(1,3)-岩藻糖基化后可获得配体活性。相比之下,ESL-1几乎仅作为主要糖蛋白配体从LEC12细胞以及FucTIV和FucTVII转染体中分离出来,而从FucTV和FucTVI转染体中分离的选择性较低。配体活性的选择性产生与已知可与E-选择素结合的HECA452反应性碳水化合物表位的选择性产生相关。这些数据表明,取决于岩藻糖基转移酶的类型,ESL-1是产生与E-选择素结合的碳水化合物修饰的强烈优选靶分子。