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Minimizing the Entropy Penalty for Ligand Binding: Lessons from the Molecular Recognition of the Histo Blood‐Group Antigens by Human Galectin‐3

机译:最小化配体结合的熵罚:人类Galectin-3分子识别组织血型抗原的经验教训

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摘要

Ligand conformational entropy plays an important role in carbohydrate recognition events. Glycans are characterized by intrinsic flexibility around the glycosidic linkages, thus in most cases, loss of conformational entropy of the sugar upon complex formation strongly affects the entropy of the binding process. By employing a multidisciplinary approach combining structural, conformational, binding energy, and kinetic information, we investigated the role of conformational entropy in the recognition of the histo blood‐group antigens A and B by human galectin‐3, a lectin of biomedical interest. We show that these rigid natural antigens are pre‐organized ligands for hGal‐3, and that restriction of the conformational flexibility by the branched fucose (Fuc) residue modulates the thermodynamics and kinetics of the binding process. These results highlight the importance of glycan flexibility and provide inspiration for the design of high‐affinity ligands as antagonists for lectins.
机译:配体构象熵在碳水化合物识别事件中起重要作用。聚糖的特征在于糖苷键周围的固有柔性,因此,在大多数情况下,复合物形成后糖构象熵的丧失强烈影响结合过程的熵。通过采用结合结构,构象,结合能和动力学信息的多学科方法,我们研究了构象熵在人galectin-3(一种具有生物医学意义的凝集素)对组织血型抗原A和B的识别中的作用。我们显示这些刚性天然抗原是hGal-3的预组织配体,分支岩藻糖(Fuc)残基对构象柔韧性的限制调节了结合过程的热力学和动力学。这些结果突出了聚糖灵活性的重要性,并为设计高亲和力配体作为凝集素拮抗剂提供了灵感。

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