Angström J, Bäckström M, Berntsson A, Karlsson N, Holmgren J, Karlsson K A, Lebens M, Teneberg S
Institute of Medical Biochemistry, Göteborg University, P. O. Box 440, SE 405 30 Göteborg, Sweden.
J Biol Chem. 2000 Feb 4;275(5):3231-8. doi: 10.1074/jbc.275.5.3231.
The B-subunits of cholera toxin (CTB) and Escherichia coli heat-labile enterotoxin (LTB) are structurally and functionally related. However, the carbohydrate binding specificities of the two proteins differ. While both CTB and LTB bind to the GM1 ganglioside, LTB also binds to N-acetyllactosamine-terminated glycoconjugates. The structural basis of the differences in carbohydrate recognition has been investigated by a systematic exchange of amino acids between LTB and CTB. Thereby, a CTB/LTB hybrid with a gain-of-function mutation resulting in recognition of blood group A and B determinants was obtained. Glycosphingolipid binding assays showed a specific binding of this hybrid B-subunit, but not CTB or LTB, to slowly migrating non-acid glycosphingolipids of human and animal small intestinal epithelium. A binding-active glycosphingolipid isolated from cat intestinal epithelium was characterized by mass spectrometry and proton NMR as GalNAcalpha3(Fucalpha2)Galbeta4(Fucalpha3)Glc NAcbeta3Galbeta4Glc NAcbeta3Galbeta4Glcbeta1Cer. Comparison with reference glycosphingolipids showed that the minimum binding epitope recognized by the CTB/LTB hybrid was Galalpha3(Fucalpha2)Galbeta4(Fucalpha3)GlcNAc beta. The blood group A and B determinants bind to a novel carbohydrate binding site located at the top of the B-subunit interfaces, distinct from the GM1 binding site, as found by docking and molecular dynamics simulations.
霍乱毒素(CTB)和大肠杆菌不耐热肠毒素(LTB)的B亚基在结构和功能上相关。然而,这两种蛋白质的碳水化合物结合特异性不同。虽然CTB和LTB都与GM1神经节苷脂结合,但LTB也与N-乙酰乳糖胺末端的糖缀合物结合。通过在LTB和CTB之间系统地交换氨基酸,研究了碳水化合物识别差异的结构基础。由此,获得了一种具有功能获得性突变的CTB/LTB杂合体,该突变导致对A和B血型决定簇的识别。糖鞘脂结合试验表明,这种杂合B亚基而非CTB或LTB与人及动物小肠上皮细胞缓慢迁移的非酸性糖鞘脂有特异性结合。从猫肠上皮细胞分离出的一种具有结合活性的糖鞘脂,经质谱和质子核磁共振表征为GalNAcalpha3(Fucalpha2)Galbeta4(Fucalpha3)Glc NAcbeta3Galbeta4Glc NAcbeta3Galbeta4Glcbeta1Cer。与参考糖鞘脂比较表明,CTB/LTB杂合体识别的最小结合表位是Galalpha3(Fucalpha2)Galbeta4(Fucalpha3)GlcNAc beta。通过对接和分子动力学模拟发现,A和B血型决定簇与位于B亚基界面顶部的一个新的碳水化合物结合位点结合,该位点与GM1结合位点不同。