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糖簇和糖树枝状大分子的分子动力学模拟

Molecular dynamics simulations of glycoclusters and glycodendrimers.

作者信息

von der Lieth Claus W, Frank Martin, Lindhorst Thisbe K

机构信息

Deutsches Krebsforschungszentrum, Zentrale Spektroskopie, Heidelberg, Germany.

出版信息

J Biotechnol. 2002 May;90(3-4):311-37. doi: 10.1016/s1389-0352(01)00072-1.

Abstract

Protein-carbohydrate recognition plays a crucial role in a wide range of biological processes, required both for normal physiological functions and the onset of disease. Nature uses multivalency in carbohydrate-protein interactions as a strategy to overcome the low affinity found for singular binding of an individual saccharide epitope to a single carbohydrate recognition domain of a lectin. To mimic the complex multi-branched oligosaccharides found in glycoconjugates, which form the structural basis of multivalent carbohydrate-protein interactions, so-called glycoclusters and glycodendrimers have been designed to serve as high-affinity ligands of the respective receptor proteins. To allow a rational design of glycodendrimer-type molecules with regard to the receptor structures involved in carbohydrate recognition, a deeper knowledge of the dynamics of such molecules is desirable. Most glycodendrimers have to be considered highly flexible molecules with their conformational preferences most difficult to elucidate by experimental methods. Longtime molecular dynamics (MD) simulations with inclusion of explicit solvent molecules are suited to explore the conformational space accessible to glycodendrimers. Here, a detailed geometric and conformational analysis of 15 glycodendrimers and glycoclusters has been accomplished, which differ with regard to their core moieties, spacer characteristics and the type of terminal carbohydrate units. It is shown that the accessible conformational space depends strongly on the structural features of the core and spacer moieties and even on the type of terminating sugars. The obtained knowledge about possible spatial distributions of the sugar epitopes exposed on the investigated hyperbranched neoglycoconjugates is detailed for all examples and forms important information for the interpretation and prediction of affinity data, which can be deduced from biological testing of these multivalent neoglycoconjugates.

摘要

蛋白质 - 碳水化合物识别在广泛的生物过程中起着至关重要的作用,这对于正常生理功能和疾病的发生都是必需的。自然界在碳水化合物 - 蛋白质相互作用中利用多价性作为一种策略,以克服单个糖表位与凝集素的单个碳水化合物识别域的单一结合所具有的低亲和力。为了模拟糖缀合物中发现的复杂多分支寡糖,其构成了多价碳水化合物 - 蛋白质相互作用的结构基础,所谓的糖簇和糖树枝状大分子已被设计用作相应受体蛋白的高亲和力配体。为了能够根据参与碳水化合物识别的受体结构对糖树枝状大分子型分子进行合理设计,需要更深入地了解此类分子的动力学。大多数糖树枝状大分子必须被视为高度灵活的分子,其构象偏好极难通过实验方法阐明。包含明确溶剂分子的长时间分子动力学(MD)模拟适合于探索糖树枝状大分子可及的构象空间。在此,已完成了对15种糖树枝状大分子和糖簇的详细几何和构象分析,它们在核心部分、间隔特征和末端碳水化合物单元类型方面存在差异。结果表明,可及的构象空间强烈依赖于核心和间隔部分的结构特征,甚至取决于末端糖的类型。对于所有实例,都详细给出了在所研究的超支化新糖缀合物上暴露的糖表位可能的空间分布所获得的知识,并形成了用于解释和预测亲和力数据的重要信息,这些数据可从这些多价新糖缀合物的生物学测试中推导得出。

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