Sikder S K, Kabat E A, Roberts D D, Goldstein I J
Carbohydr Res. 1986 Aug 15;151:247-60. doi: 10.1016/s0008-6215(00)90345-8.
The combining site of the lima bean (Phaseolus lunatus) lectin (LBL) was studied by quantitative precipitin and precipitin-inhibition assays. The lectin precipitated best with hog gastric mucosa and human ovarian cyst blood group A1 substances and moderately with A2 substances. B substances precipitated very poorly and H, Lea, Leb, and precursor I substances did not react. Blood group A1 and A2 substances reacted to varying extents and these differences are attributable to heterogeneity resulting from incomplete biosynthesis of carbohydrate chains. By inhibition of precipitation of LBL with A1 blood group substance, the lectin was found to be most specific for fucose-containing oligosaccharides having the A trisaccharide, DGalNAc alpha 1----3[L-Fuc alpha 1----2]DGal determinant. The best inhibitor, an A-specific hexasaccharide, DGalNAc alpha 1----3[LFuc alpha 1----2]DGal beta 1----3DGlcNAc beta 1----3-DGal beta 1----4DGlc, was 11 times more active than the A trisaccharide. A difucosyl oligosaccharide with a second fucose linked alpha 1----3 to the DGlcNAc is less active; fucose linked alpha 1----4 to DGlcNAc was completely inactive. These results suggest that specific interactions with the subterminal sugars may be important in the binding, and that the specificity of the lectin combining site involves at least the nonreducing terminal four and probably five sugars of the hexasaccharide. Thus LBL has a more-extended binding site than was inferred previously and is in the upper range of antibody combining-site sizes.
通过定量沉淀和沉淀抑制试验研究了利马豆(菜豆)凝集素(LBL)的结合位点。该凝集素与猪胃黏膜和人卵巢囊肿血型A1物质沉淀效果最佳,与A2物质沉淀效果中等。B物质沉淀效果很差,而H、Lea、Leb和前体I物质不发生反应。血型A1和A2物质反应程度不同,这些差异归因于碳水化合物链生物合成不完全导致的异质性。通过用A1血型物质抑制LBL的沉淀,发现该凝集素对具有A三糖、DGalNAcα1----3[L-Fucα1----2]DGal决定簇的含岩藻糖寡糖最具特异性。最佳抑制剂是一种A特异性六糖,DGalNAcα1----3[LFucα1----2]DGalβ1----3DGlcNAcβ1----3-DGalβ1----4DGlc,其活性比A三糖高11倍。一种第二个岩藻糖以α1----3连接到DGlcNAc的二岩藻糖基寡糖活性较低;以α1----4连接到DGlcNAc的岩藻糖完全无活性。这些结果表明,与亚末端糖的特异性相互作用在结合中可能很重要,并且凝集素结合位点的特异性至少涉及六糖的非还原末端四个糖,可能还有五个糖。因此,LBL具有比先前推断的更扩展的结合位点,处于抗体结合位点大小的上限范围内。