Spring F A, Anstee D J
Biochem J. 1983 Sep 1;213(3):661-70. doi: 10.1042/bj2130661.
A panel of lectins was used to analyse glycoproteins of normal granulocytes and leukaemic myeloid cells. The glycoproteins of detergent-solubilized whole cells were separated by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis and their lectin-binding properties determined by incubation of the fixed gels with radioiodinated lectins. Normal granulocytes and leukaemic myeloid cells in different stages of maturation possess a cell-surface sialic acid-rich glycoprotein of apparent mol.wt. 115 000 (GP115), that can be labelled by both the lactoperoxidase and periodate/NaB3H4 cell-surface labelling techniques. The sialoglycoprotein of leukaemic myeloblasts has a slightly lower apparent mol.wt., 112000 (GP112). After neuraminidase treatment before cell solubilization, both GP115 and GP112 bind the lectins from Arachis hypogaea (peanut) and Helix pomatia (snail) and have an increased apparent molecular weight of 125000. Two concanavalin A-binding glycoproteins of apparent mol.wts. 98000 and 90000 are present in leukaemic myeloblasts. Concanavalin A binding to these glycoproteins is decreased in more mature leukaemic cells and absent in granulocytes. As concanavalin A binding decreases in the maturer forms, there is a concomitant increase in the binding of Ricinus communis (castor bean) and Maclura aurantiaca (osage orange) lectins to these glycoproteins. Whole granulocytes, but not leukaemic myeloblasts, contain a major cell-surface concanavalin A binding glycoprotein of apparent mol.wt. 130000, which is labelled by the periodate/NaB3H4 technique. Concanavalin A binding to this glycoprotein increases as the morphology of leukaemic cells approaches that of mature granulocytes.
一组凝集素被用于分析正常粒细胞和白血病髓细胞的糖蛋白。用十二烷基硫酸钠/聚丙烯酰胺凝胶电泳分离经去污剂溶解的全细胞的糖蛋白,并通过将固定的凝胶与放射性碘化凝集素温育来确定其凝集素结合特性。处于不同成熟阶段的正常粒细胞和白血病髓细胞拥有一种表观分子量为115000的富含细胞表面唾液酸的糖蛋白(GP115),该蛋白可通过乳过氧化物酶和高碘酸盐/硼氢化钠3细胞表面标记技术进行标记。白血病原粒细胞的唾液酸糖蛋白的表观分子量略低,为112000(GP112)。在细胞溶解前用神经氨酸酶处理后,GP115和GP112都能结合来自落花生(花生)和苹果螺(蜗牛)的凝集素,且表观分子量增加到125000。白血病原粒细胞中存在两种表观分子量分别为98000和90000的伴刀豆球蛋白A结合糖蛋白。伴刀豆球蛋白A与这些糖蛋白的结合在更成熟的白血病细胞中减少,在粒细胞中则不存在。随着成熟形式中伴刀豆球蛋白A结合的减少,蓖麻(蓖麻子)和桑橙(奥塞奇橙)凝集素与这些糖蛋白的结合会相应增加。全粒细胞而非白血病原粒细胞含有一种表观分子量为130000的主要细胞表面伴刀豆球蛋白A结合糖蛋白,该蛋白可通过高碘酸盐/硼氢化钠3技术进行标记。随着白血病细胞形态接近成熟粒细胞,伴刀豆球蛋白A与该糖蛋白的结合增加。