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通过构象分析和分子动力学对神经节苷脂头部基团进行建模。

Modeling ganglioside headgroups by conformational analysis and molecular dynamics.

作者信息

Brocca P, Bernardi A, Raimondi L, Sonnino S

机构信息

Università di Milano, Dipartimento di Chimica Organica e Industriale, Italy.

出版信息

Glycoconj J. 2000 May;17(5):283-99. doi: 10.1023/a:1007161319700.

Abstract

The conformations and dynamics of gangliosides GM1, GM2, 6'-GM2 and GM4 have been studied by computational means, and the results compared to NMR data. Unconstrained conformational searches were run using the AMBER* force field augmented by MNDO derived parameters for the Neu5Ac anomeric torsion, the GB/SA water solvation model, and the MC/EM alogorithm; extended (10-12 ns) dynamic simulations in GB/SA water were performed with the MC/SD protocol, and the stored structures were minimized. The overall mobility of the Neu5Ac alpha2,3Gal linkage and the position of its minimum energy conformation have been shown to depend mainly on the presence or the absence of a GalNAc residue at the adjacent position. The best quantitative agreement with the available NOE data was achieved after minimization of the structures stored during the MC/SD dynamic runs. The latter protocol appears to reproduce satisfactorily the available experimental data, and can be used with confidence to build three-dimensional models of ganglioside headgroups.

摘要

已通过计算手段研究了神经节苷脂GM1、GM2、6'-GM2和GM4的构象与动力学,并将结果与核磁共振数据进行了比较。使用由MNDO推导的Neu5Ac异头扭转参数增强的AMBER*力场、GB/SA水溶剂化模型和MC/EM算法进行无约束构象搜索;采用MC/SD协议在GB/SA水中进行了扩展(10 - 12纳秒)的动力学模拟,并对存储的结构进行了最小化处理。已表明Neu5Ac α2,3Gal键的整体流动性及其最低能量构象的位置主要取决于相邻位置是否存在GalNAc残基。在对MC/SD动态运行期间存储的结构进行最小化处理后,与可用的NOE数据实现了最佳的定量一致性。后一种协议似乎能令人满意地重现可用的实验数据,并可放心用于构建神经节苷脂头部基团的三维模型。

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