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NMR characterization and molecular modeling of fucoidan showing the importance of oligosaccharide branching in its anticomplementary activity

机译:岩藻依聚糖的NMR表征和分子建模表明寡糖分支在其抗互补活性中的重要性

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摘要

Fucoidan is a potent inhibitor of the human complement system whose activity is mediated through interactions with certain proteins belonging to the classical pathway, particularly the protein C4. Branched fucoidan oligosaccharides displayed a higher anticomplementary activity as compared to linear structures. Nuclear magnetic resonance (NMR) characterization of the branched oligosaccharides and saturation transfer difference-NMR experiment of the interaction with the protein C4 allowed the identification of the glycan residues in close contact with the target protein. Transferred nuclear Overhauser effect spectroscopy experiment and molecular modeling of fucoidan oligosaccharides indicated that the presence of side chains reduces the flexibility of the oligosaccharide backbone, which thus adopts a conformation which is very close to the one recognized by the protein C4. Together, these results suggest that branching of fucoidan oligosaccharides, determining their conformational state, has a major impact on their anticomplementary activity.
机译:岩藻依聚糖是人补体系统的有效抑制剂,其活性是通过与属于经典途径的某些蛋白质(尤其是蛋白质C4)相互作用而介导的。与线性结构相比,支链岩藻依聚糖低聚糖显示出更高的抗互补活性。支链寡糖的核磁共振(NMR)表征和与蛋白质C4相互作用的饱和转移差异-NMR实验可以鉴定与目标蛋白质紧密接触的聚糖残基。岩藻依聚糖寡糖的转移核Overhauser效应光谱实验和分子建模表明,侧链的存在降低了寡糖骨架的柔韧性,因此所采用的构象非常接近蛋白C4所识别的构象。在一起,这些结果表明,岩藻依聚糖寡糖的分支,确定其构象状态,对其抗互补活性有重要影响。

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