Barboni E A, Bawumia S, Henrick K, Hughes R C
National Institute for Medical Research, Mill Hill, London NW7 1AA, UK.
Glycobiology. 2000 Nov;10(11):1201-8. doi: 10.1093/glycob/10.11.1201.
A model structure (Henrick,K., Bawumia,S., Barboni,E.A.M., Mehul,B. and Hughes, R.C. (1998) Glycobiology:, 8, 45-57) of the carbohydrate recognition domain (CRD, amino acid residues 114-245) of hamster galectin-3 has been extended to include N-terminal domain amino acid residues 91-113 containing one of the nine proline-rich motifs present in full-length hamster galectin-3. The modeling predicts two configurations of the N-terminal tail: in one the tail turns toward the first (SI) and last (S12) beta-strands of the CRD and lies at the apolar dimer interface observed for galectins -1 and -2. In the second folding arrangement the N-terminal tail lies across the carbohydrate-binding pocket of the CRD where it could participate in sugar-binding: in particular tyrosine 102 and adjacent residues may interact with the partly solvent exposed nonreducing N-acetylgalactosamine and fucose substituents of the A-blood group structure GalNAcalpha1,3 [Fucalpha1,2]Galbeta1,4GlcNAc-R. Binding studies using surface plasmon resonance of a recombinant fragment Delta1-93 protein containing residues 94-245 of hamster galectin-3 and a collagenase-derived fragment Delta1-103 containing residues 104-245, as well as alanine mutagenesis of residues 101-105 in Delta1-93 protein, support the prediction that Tyr102 and adjacent residues make significant contributions to oligosaccharide binding.
仓鼠半乳糖凝集素-3碳水化合物识别结构域(CRD,氨基酸残基114 - 245)的模型结构(亨里克,K.,巴武米亚,S.,巴尔博尼,E.A.M.,梅胡尔,B.和休斯,R.C.(1998年)《糖生物学》,8,45 - 57)已扩展至包括N端结构域氨基酸残基91 - 113,该区域包含全长仓鼠半乳糖凝集素-3中存在的九个富含脯氨酸基序之一。该模型预测了N端尾巴的两种构型:一种是尾巴朝向CRD的第一条(S1)和最后一条(S12)β链,并位于半乳糖凝集素-1和-2所观察到的非极性二聚体界面处。在第二种折叠排列中,N端尾巴横跨CRD的碳水化合物结合口袋,在那里它可能参与糖结合:特别是酪氨酸102和相邻残基可能与A血型结构GalNAcalpha1,3 [Fucalpha1,2]Galbeta1,4GlcNAc - R中部分暴露于溶剂的非还原N - 乙酰半乳糖胺和岩藻糖取代基相互作用。使用包含仓鼠半乳糖凝集素-3残基94 - 245的重组片段Delta1 - 93蛋白和包含残基104 - 245的胶原酶衍生片段Delta1 - 103进行表面等离子体共振结合研究,以及对Delta1 - 93蛋白中残基101 - 105进行丙氨酸诱变,支持了酪氨酸102和相邻残基对寡糖结合有重要贡献的预测。