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不同介质中环糊精的天然和取代物的分子动力学研究:1. 电荷推导和力场性能。

Molecular dynamics studies of native and substituted cyclodextrins in different media: 1. Charge derivation and force field performances.

机构信息

Laboratoire des Glucides-CNRS UMR 6219, Université de Picardie-Jules Verne, Amiens, France.

出版信息

Phys Chem Chem Phys. 2011 Sep 7;13(33):15103-21. doi: 10.1039/c1cp20854c. Epub 2011 Jul 26.

Abstract

Molecular dynamics simulations describing the solvation process of native and modified cyclodextrins (per-substituted α-, β-, and γ-cyclodextrins, as well as an amino-acid derived β-cyclodextrin) have been performed. A homogeneous force field, namely "q4md-CD", has been built from the development of a new force field topology database and from a combination of the GLYCAM04 and Amber99SB force fields to correctly describe the geometrical, structural, dynamical and hydrogen bonding aspects of heterogeneous cyclodextrin based systems. These include native, organo- and peptidic-linked cyclodextrins. q4md-CD features: (i) geometrical parameters from Amber99SB to describe the protein parts, (ii) geometrical parameters from GLYCAM04 for the carbohydrate and organic parts when available or those of Amber99SB otherwise, (iii) partial atomic charges, embedded in force field libraries for the carbohydrate and organic fragments, were derived using the R.E.D. tools according to the "Amber" strategy and (iv) scaling factors of 1.2 and 2.0 were imposed for the 1-4 electrostatic and 1-4 van der Waals interactions, respectively. Results given by q4md-CD on native cyclodextrins have been compared to those obtained with reference to force fields like GLYCAM04, GLYCAM06 and Amber99SB as well as with experimental data. This work not only gives a global view of the performances of the aforementioned force fields towards a correct description of solvated cyclodextrins, but also extends the capabilities of current force fields by addressing some issues concerning hydrogen bonding and opens new possibilities towards studies of glycoconjugates by molecular dynamics.

摘要

已经进行了描述天然和修饰环糊精(取代的α-、β-和γ-环糊精,以及衍生自氨基酸的β-环糊精)的溶剂化过程的分子动力学模拟。构建了一个均匀力场,即“q4md-CD”,该力场是从开发新的力场拓扑数据库以及结合 GLYCAM04 和 Amber99SB 力场构建的,用于正确描述基于环糊精的异构系统的几何、结构、动力学和氢键方面。这些系统包括天然、有机和肽键连接的环糊精。q4md-CD 的特点是:(i)采用 Amber99SB 的几何参数来描述蛋白质部分,(ii)采用 GLYCAM04 的几何参数来描述碳水化合物和有机部分(如果可用),否则采用 Amber99SB 的几何参数,(iii)根据“Amber”策略,使用 R.E.D. 工具从力场库中衍生出碳水化合物和有机片段的部分原子电荷,(iv)对 1-4 静电和 1-4 范德华相互作用分别施加 1.2 和 2.0 的缩放因子。q4md-CD 对天然环糊精的结果与参考 GLYCAM04、GLYCAM06 和 Amber99SB 等力场以及实验数据的结果进行了比较。这项工作不仅全面展示了上述力场在正确描述溶剂化环糊精方面的性能,还通过解决氢键方面的一些问题扩展了当前力场的功能,并为通过分子动力学研究糖缀合物开辟了新的可能性。

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