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Structural glycobiology: A game of snakes and ladders

机译:结构糖生物学:蛇和梯子的游戏

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摘要

Oligo- and polysaccharides are infamous for being extremely flexible molecules, populating a series of well-defined rotational isomeric states under physiological conditions. Characterization of this heterogeneous conformational ensemble has been a major obstacle impeding high-resolution structure determination of carbohydrates and acting as a bottleneck in the effort to understand the relationship between the carbohydrate structure and function. This challenge has compelled the field to develop and apply theoretical and experimental methods that can explore conformational ensembles by both capturing and deconvoluting the structural and dynamic properties of carbohydrates. This review focuses on computational approaches that have been successfully used in combination with experiment to detail the three-dimensional structure of carbohydrates in a solution and in a complex with proteins. In addition, emerging experimental techniques for three-dimensional structural characterization of carbohydrate–protein complexes and future challenges in the field of structural glycobiology are discussed. The review is divided into five sections: (1) The complexity and plasticity of carbohydrates, (2) Predicting carbohydrate–protein interactions, (3) Calculating relative and absolute binding free energies for carbohydrate–protein complexes, (4) Emerging and evolving techniques for experimental characterization of carbohydrate–protein structures, and (5) Current challenges in structural glycoscience.
机译:寡糖和多糖因具有极高的柔韧性而臭名昭著,在生理条件下具有一系列明确定义的旋转异构状态。这种异构构象集合体的表征一直是阻碍对碳水化合物进行高分辨率结构测定的主要障碍,并成为理解碳水化合物结构与功能之间关系的瓶颈。这一挑战迫使该领域开发并应用理论和实验方法,这些方法可以通过捕获和解卷积碳水化合物的结构和动力学特性来探索构象合奏。这篇综述着重于已成功地与实验结合使用的计算方法,以详细描述溶液中和蛋白质复合物中碳水化合物的三维结构。此外,还讨论了碳水化合物-蛋白质复合物的三维结构表征的新兴实验技术以及结构糖生物学领域的未来挑战。该综述分为五个部分:(1)碳水化合物的复杂性和可塑性,(2)预测碳水化合物-蛋白质的相互作用,(3)计算碳水化合物-蛋白质复合物的相对和绝对结合自由能,(4)新兴和发展的技术(5)目前在结构糖科学领域的挑战。

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