Interaction of Vicia graminea anti-N lectin with cell surface glycoproteins from erythrocytes with rare blood group antigens.

D Blanchard, A Asseraf, M J Prigent, J J Moulds, D Chandanayingyong, J P Cartron
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引用次数: 15

Abstract

The erythrocyte receptors for Vicia graminea (Vg) anti-N lectin have been investigated after 125I-labelling of the purified lectin and binding to membrane components separated by dodecyl sulphate polyacrylamide gel electrophoresis. GP alpha (synonym glycophorin A or MN glycoprotein) and GP delta (synonym glycophorin B or Ss glycoprotein) are the main Vg receptors of native human blood group NN and MN erythrocytes whereas Vg lectin only binds to GP delta from MM red cells. The glycoprotein of 28 kDa present in Mi III erythrocytes (a presumed variant of GP delta) carries Vg receptors. Both binding studies and agglutination experiments with this lectin suggest that the delta Mi III gene might produce more glycoprotein molecules than the normal delta gene. Binding of Vg lectin to hybrid glycoproteins [from Mi V, St(a+) and Dantu (+) donors] produced by unequal crossing-over between alpha and delta genes, may occur if the molecules exhibit N activity. The lectin does not bind to sialic acid- and galactose-deficient glycoproteins from Tn erythrocytes and no binding could be detected in the region of GP delta of erythrocytes from S-s-U-individuals. Addition of N-acetylgalactosamine residues to the alkali-labile oligosaccharides attached to GP alpha and GP delta, as found in Cad erythrocytes, decrease the binding capacity for Vg lectin. Finally the absence of Vg lectin binding sites on native GP alpha molecule from MgMg and McM erythrocytes, which carry well defined variants of this glycoprotein, supports the view that the binding site of the lectin on native glycoproteins is located at the N-terminal end of glycoprotein (GP alpha and GP delta) with N specificity (N-terminus = Leu).

小麦抗n凝集素与罕见血型抗原红细胞表面糖蛋白的相互作用。
将纯化的凝集素进行125i标记,并与十二烷基硫酸钠聚丙烯酰胺凝胶电泳分离的膜组分结合,研究了小麦抗n凝集素的红细胞受体。GP α(糖蛋白A或MN糖蛋白的同义词)和GP δ(糖蛋白B或Ss糖蛋白的同义词)是天然人血型NN和MN红细胞的主要Vg受体,而Vg凝集素仅与MM红细胞的GP δ结合。Mi III型红细胞中存在的28 kDa糖蛋白(假定是GP δ的变体)携带Vg受体。这种凝集素的结合研究和凝集实验表明,delta Mi III基因可能比正常的delta基因产生更多的糖蛋白分子。如果分子表现出N活性,则可能发生Vg凝集素与杂交糖蛋白(来自Mi V, St(a+)和Dantu(+)供体)的结合,这种结合是由α和δ基因之间的不平等交叉产生的。凝集素不与来自Tn红细胞的唾液酸和半乳糖缺乏糖蛋白结合,在s- s- u个体红细胞的GP δ区未检测到结合。在Cad红细胞中发现,将n -乙酰半乳糖胺残基添加到GP α和GP δ上的碱不稳定寡糖上,降低了Vg凝集素的结合能力。最后,MgMg和McM红细胞中原生GP α分子上没有Vg凝集素结合位点,这支持了凝集素与原生糖蛋白结合位点位于糖蛋白(GP α和GP δ)的N端,具有N特异性(N端= Leu)的观点。
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