Bhattacharyya L, Fant J, Lonn H, Brewer C F
Department of Molecular Pharmacology, Albert Einstein College of Medicine, Bronx, New York 10461.
Biochemistry. 1990 Aug 14;29(32):7523-30. doi: 10.1021/bi00484a022.
We have recently observed that certain asparagine-linked oligosaccharides are multivalent and capable of binding and precipitating with the D-mannose-specific lectin concanavalin A [cf. Bhattacharyya, L., & Brewer, C. F. (1989) Eur. J. Biochem. 178, 721-726] and with a variety of D-galactose-specific lectins [Bhattacharyya, L., Haraldsson, M., & Brewer, C. F. (1988) Biochemistry 27, 1034-1041]. In the present study, we have examined the binding and precipitating activities of a variety of mono- and biantennary L-fucosyl oligosaccharides with three L-fucose-specific isolectins from Lotus tetragonolobus, LTL-A, LTL-B, and LTL-C. The results show that certain difucosyl biantennary oligosaccharides are capable of cross-linking and precipitating with tetrameric isolectins, LTL-A and LTL-C, but not with dimeric isolectin, LTL-B. Quantitative precipitation analyses show that biantennary oligosaccharides containing the Lewis(x) antigen (or type 2 chain of Lewis(a)), Gal beta (1-4)[Fuc alpha (1-3)]GlcNAc, at the nonreducing terminus of each arm are bivalent ligands. However, a biantennary oligosaccharide containing a Lewis(x) determinant on one arm and a type 2 chain of blood group H(O) determinant, Fuc alpha (1-2)Gal beta (1-4)GlcNAc, on the other arm and a monoantennary oligosaccharide containing two fucose residues (analogue of the Lewis(y) antigen) bind but do not precipitate with the isolectins, indicating that the positions and linkage of fucose residues are critical for cross-linking.(ABSTRACT TRUNCATED AT 250 WORDS)
我们最近观察到某些天冬酰胺连接的寡糖具有多价性,能够与D-甘露糖特异性凝集素伴刀豆球蛋白A结合并沉淀[参见Bhattacharyya, L., & Brewer, C. F. (1989) Eur. J. Biochem. 178, 721 - 726],还能与多种D-半乳糖特异性凝集素结合[Bhattacharyya, L., Haraldsson, M., & Brewer, C. F. (1988) Biochemistry 27, 1034 - 1041]。在本研究中,我们检测了多种单天线和双天线L-岩藻糖基寡糖与来自四角豆的三种L-岩藻糖特异性同工凝集素LTL-A、LTL-B和LTL-C的结合及沉淀活性。结果表明,某些二岩藻糖基双天线寡糖能够与四聚体同工凝集素LTL-A和LTL-C发生交联和沉淀,但不能与二聚体同工凝集素LTL-B发生反应。定量沉淀分析表明,在每个臂的非还原末端含有Lewis(x)抗原(或Lewis(a)的2型链)Galβ(1 - 4)[Fucα(1 - 3)]GlcNAc的双天线寡糖是二价配体。然而,一种在一个臂上含有Lewis(x)决定簇而在另一个臂上含有血型H(O)决定簇的2型链Fucα(1 - 2)Galβ(1 - 4)GlcNAc的双天线寡糖以及一种含有两个岩藻糖残基的单天线寡糖(Lewis(y)抗原类似物)能与同工凝集素结合但不沉淀,这表明岩藻糖残基的位置和连接方式对交联至关重要。(摘要截短于250词)