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首页> 外文期刊>Seminars in Thrombosis and Hemostasis >Active conformations of glycosaminoglycans. NMR determination of the conformation of heparin sequences complexed with antithrombin and fibroblast growth factors in solution.
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Active conformations of glycosaminoglycans. NMR determination of the conformation of heparin sequences complexed with antithrombin and fibroblast growth factors in solution.

机译:糖胺聚糖的主动构象。核磁共振测定溶液中与抗凝血酶和成纤维细胞生长因子复合的肝素序列的构象。

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Binding to proteins usually induces perturbation of nuclear magnetic resonances of ligand molecules. Using sensitive nuclear magnetic resonance (NMR) spectroscopy techniques, these perturbations have been measured for heparin oligosaccharides in aqueous solution in the presence of proteins and the NMR data have been used to characterize the three-dimensional (3D) structure of the oligosaccharides in the bound state. The pentasaccharide corresponding to the active site of heparin/heparan sulfate for antithrombin (AT) adopts in the complex with the protein a conformation different from that in the absence of the protein. A notable difference involves the 2-O-sulfated iduronic acid (IdoA2S) residue, which is driven to adopt an exclusively skew-boat @affil2: 2S 0 form in the complex. In addition, complexing induces a change in the geometry around the glycosidic linkage between the nonreducing end glucosamine and the adjacent glucuronic acid residue as compared with the free state. NMR and molecular modeling data also indicate that the 2-O-sulfate group in the IdoA2S residue is not directly involved in binding to AT. This suggests that its role is mainly that of affecting the conformational equilibrium of this residue, leading to a 3D structure of pentasaccharide in the bound state that meets the stereochemical requirements of the receptor and results in high-affinity binding to the protein. On the other hand, NMR studies of heparin tetrasaccharides in the presence of fibroblast growth factors FGF-1 and FGF-2 indicate that FGF binding stabilizes the @affil1: 1C 4 conformation of the IdoA2S residue directly involved in binding. These studies also confirm the crucial role of the 6-O-sulfate group on at least one glucosamine residue in the formation of the complex with FGF-1 but not with FGF-2.
机译:与蛋白质的结合通常会引起配体分子核磁共振的扰动。使用敏感的核磁共振(NMR)光谱技术,在蛋白质存在下对水溶液中的肝素寡糖测量了这些扰动,并且NMR数据已用于表征结合中的寡糖的三维(3D)结构州。与抗凝血酶(AT)的肝素/硫酸乙酰肝素的活性位点相对应的五糖在与蛋白质的复合物中采用不同于不存在蛋白质的构象。显着的差异涉及2-O-硫酸化的艾杜糖醛酸(IdoA2S)残基,该残基被驱使采用复合物中的专有偏斜舟@ affil2:2S 0形式。另外,与游离状态相比,络合引起非还原性末端葡糖胺和相邻的葡糖醛酸残基之间的糖苷键周围的几何形状变化。 NMR和分子模型数据还表明,IdoA2S残基中的2-O-硫酸根基团不直接参与与AT的结合。这表明其作用主要是影响该残基的构象平衡,从而导致处于结合状态的五糖3D结构满足受体的立体化学要求并导致与蛋白质的高亲和力结合。另一方面,在成纤维细胞生长因子FGF-1和FGF-2存在下对肝素四糖的NMR研究表明,FGF结合稳定了直接参与结合的IdoA2S残基的@ affil1:1C 4构象。这些研究还证实了6-O-硫酸盐基团在至少一个葡糖胺残基上与FGF-1而不是与FGF-2形成复合物的关键作用。

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