Suppr超能文献

基于短链性质外推的多糖蒙特卡罗模拟:不同力场下糖苷键的构象

The Conformation of Glycosidic Linkages According to Various Force Fields: Monte Carlo Modeling of Polysaccharides Based on Extrapolation of Short-Chain Properties.

作者信息

Lutsyk Valery, Wolski Pawel, Plazinski Wojciech

机构信息

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

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

出版信息

J Chem Theory Comput. 2024 Jul 23;20(14):6350-6368. doi: 10.1021/acs.jctc.4c00543. Epub 2024 Jul 10.

Abstract

The conformational features of the glycosidic linkage are the most important variable to consider when studying di-, oligo-, and polysaccharide molecules using molecular dynamics (MD) simulations. The accuracy of the theoretical model describing this degree of freedom influences the quality of the results obtained from MD calculations based on this model. This article focuses on the following two issues related to the conformation of the glycosidic linkage. First, we describe the results of a comparative analysis of the predictions of three carbohydrate-dedicated classical force fields for MD simulations, namely, CHARMM, GLYCAM, and GROMOS, in the context of different parameters of structural and energetic nature related to the conformation of selected types of glycosidic linkages, α(1 → 4), β(1 → 3), and β(1 → 4), connecting glucopyranose units. This analysis revealed several differences, mainly concerning the energy levels of the secondary and tertiary conformers and the linkage flexibility within the dominant - conformation for α(1 → 4) and β(1 → 3) linkages. Some aspects of the comparative analysis also included the newly developed, carbohydrate-dedicated Martini 3 coarse-grained force field. Second, to overcome the time-scale problem associated with sampling slow degrees of freedom in polysaccharide chains during MD simulations, we developed a coarse-grained (CG) model based on the data from MD simulations and designed for Monte Carlo modeling. This model (CG MC) is based on information from simulations of short saccharide chains, effectively sampled in atomistic MD simulations, and is capable of extrapolating local conformational properties to the case of polysaccharides of arbitrary length. The CG MC model has the potential to estimate the conformations of very long polysaccharide chains, taking into account the influence of secondary and tertiary conformations of glycosidic linkages. With respect to the comparative analysis of force fields, the application of CG MC modeling showed that relatively small differences in the predictions of individual force fields with respect to a single glycosidic linkage accumulate when considering their effect on the structure of longer chains, leading to drastically different predictions with respect to parameters describing the polymer conformation, such as the persistence length.

摘要

当使用分子动力学(MD)模拟研究二糖、寡糖和多糖分子时,糖苷键的构象特征是需要考虑的最重要变量。描述这种自由度的理论模型的准确性会影响基于该模型的MD计算所获得结果的质量。本文重点关注与糖苷键构象相关的以下两个问题。首先,我们描述了在与选定类型的糖苷键(连接吡喃葡萄糖单元的α(1→4)、β(1→3)和β(1→4))构象相关的结构和能量性质的不同参数背景下,对用于MD模拟的三种碳水化合物专用经典力场(即CHARMM、GLYCAM和GROMOS)预测结果的比较分析。该分析揭示了几个差异,主要涉及二级和三级构象的能量水平以及α(1→4)和β(1→3)键主导构象内的键柔性。比较分析的某些方面还包括新开发的碳水化合物专用Martini 3粗粒度力场。其次,为了克服MD模拟过程中多糖链中慢自由度采样相关的时间尺度问题,我们基于MD模拟数据开发了一个粗粒度(CG)模型,并设计用于蒙特卡罗建模。该模型(CG MC)基于短糖链模拟的信息,在原子MD模拟中有效采样,并且能够将局部构象性质外推到任意长度的多糖情况。CG MC模型有潜力估计非常长的多糖链的构象,同时考虑糖苷键二级和三级构象的影响。关于力场的比较分析,CG MC建模的应用表明,当考虑单个力场对较长链结构的影响时,它们对单个糖苷键预测的相对小差异会累积,导致在描述聚合物构象的参数(如持久长度)方面产生截然不同的预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2280/11270825/87018c43fb93/ct4c00543_0001.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验