首页> 外文期刊>Journal of chemical theory and computation: JCTC >Conformational Sampling of Oligosaccharides Using Hamiltonian Replica Exchange with Two-Dimensional Dihedral Biasing Potentials and the Weighted Histogram Analysis Method (WHAM)
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Conformational Sampling of Oligosaccharides Using Hamiltonian Replica Exchange with Two-Dimensional Dihedral Biasing Potentials and the Weighted Histogram Analysis Method (WHAM)

机译:使用汉密尔顿副本交换和二维二面角偏置电位和加权直方图分析方法对寡糖进行构象采样

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摘要

Oligosaccharides and polysaccharides exert numerous functional roles in biology through their structural diversity and conformational properties. To investigate their conformational properties using computational methods, Hamiltonian replica exchange (H-REX) combined with two-dimensional grid-based correction maps as biasing potentials (bpCMAP) significantly improves the sampling efficiency about glycosidic linkages. In the current study, we extend the application of H-REX with bpCMAP to complex saccharides and establish systematic procedures for bpCMAP construction, determination of replica distribution, and data analysis. Our main findings are that (1) the bpCMAP for each type of glycosidic linkage can be constructed from the corresponding disaccharide using gas-phase umbrella sampling simulations, (2) the replica distribution can be conveniently determined following the exact definition of the average acceptance ratio based on the assigned distribution of biasing potentials, and (3) the extracted free energy surface (or potential of mean force (PMF)) can be improved using the weighted histogram analysis method (WHAM) allowing for the inclusion of data from the excited state replicas in the calculated probability distribution. The method is applied to a branched N-glycan found on the HIV gp120 protein, and a linear N-glycan. Considering the general importance of N-glycans and the wide appreciation of the sampling problem, the present method represents an efficient procedure for the conformational sampling of complex oligo- and polysaccharides under explicit solvent conditions. More generally, the use of WHAM is anticipated to be of general utility for the calculation of PMFs from H-REX simulations in a wide range of macromolecular systems.
机译:寡糖和多糖通过其结构多样性和构象特性在生物学中发挥许多功能作用。为了使用计算方法研究其构象性质,汉密尔顿副本交换(H-REX)结合二维基于网格的校正图作为偏向电势(bpCMAP)显着提高了糖苷键的采样效率。在当前的研究中,我们将H-REX与bpCMAP的应用扩展到复杂的糖类,并建立了用于bpCMAP构建,确定复制品分布和数据分析的系统程序。我们的主要发现是(1)每种糖苷键的bpCMAP可以使用气相伞样法从相应的二糖构建,(2)可以根据平均接受率的精确定义方便地确定复制分布基于偏置电势的分配分布,并且(3)可以使用加权直方图分析方法(WHAM)改进提取的自由能表面(或平均力电势(PMF)),从而允许包含激发态的数据计算出的概率分布中的副本。该方法适用于HIV gp120蛋白上的支链N-聚糖和线性N-聚糖。考虑到N-聚糖的一般重要性和对采样问题的广泛理解,本方法代表了在明确的溶剂条件下对复杂的寡糖和多糖进行构象采样的有效程序。更普遍地,在广泛的大分子系统中,使用WHAM有望从H-REX模拟计算PMF通用。

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