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比较蛋白质-碳水化合物复合物分子动力学模拟中的碳水化合物力场。

Comparison of Carbohydrate Force Fields in Molecular Dynamics Simulations of Protein-Carbohydrate Complexes.

机构信息

Department of Biopharmacy, Medical University of Lublin, Chodzki 4a, 20-093 Lublin, Poland.

Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, Niezapominajek 8, 30-239 Krakow, Poland.

出版信息

J Chem Theory Comput. 2021 Apr 13;17(4):2575-2585. doi: 10.1021/acs.jctc.1c00071. Epub 2021 Mar 11.

Abstract

In this paper, we present the results of molecular dynamics simulations aimed at critical comparison of classical, biomolecular force fields (FFs) in the context of their capabilities to describe the structural and thermodynamic features of carbohydrate-protein interactions. We have considered the three main families of FFs (CHARMM, GROMOS, and GLYCAM/AMBER) by applying them to investigate the seven different carbohydrate-protein complexes. The results indicate that although the qualitative pattern of several structural descriptors (intermolecular hydrogen bonding, ligand dynamic location, etc.) is conserved among the compared FFs, there also exists a number of significant divergences (mainly the patterns of contacts between particular amino acid residues and bound carbohydrate). The carbohydrate-protein unbinding free energies also vary from one FF to another, displaying diversified trends in deviations from the experimental data. The magnitude of those deviations is not negligible and indicates the need for refinement in the currently existing combinations of carbohydrate- and protein-dedicated biomolecular force fields. In spite of the lack of explicit functional terms responsible for the corresponding intermolecular forces, all tested FFs are capable of adequately reproducing the CH-π interactions, crucial for carbohydrate-protein binding.

摘要

在本文中,我们呈现了分子动力学模拟的结果,旨在对经典的、生物分子力场(FF)进行关键性比较,以评估它们在描述碳水化合物-蛋白质相互作用的结构和热力学特征方面的能力。我们应用了三种主要的力场(CHARMM、GROMOS 和 GLYCAM/AMBER),对七种不同的碳水化合物-蛋白质复合物进行了研究。结果表明,尽管几种结构描述符(分子间氢键、配体动态位置等)的定性模式在比较的力场中保持一致,但也存在一些显著的差异(主要是特定氨基酸残基与结合的碳水化合物之间的接触模式)。碳水化合物-蛋白质的非键合自由能也因力场而异,从一个力场到另一个力场显示出与实验数据偏离的多样化趋势。这些偏差的幅度不可忽略,表明需要对现有的碳水化合物和蛋白质专用生物分子力场的组合进行细化。尽管缺乏负责相应分子间力的显式功能项,但所有测试的力场都能够充分再现对碳水化合物-蛋白质结合至关重要的 CH-π 相互作用。

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