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Efficient Construction of Atomic-Resolution Models of Non-Sulfated Chondroitin Glycosaminoglycan Using Molecular Dynamics Data

机译:使用分子动力学数据高效构建非硫酸化软骨素糖胺聚糖的原子分辨模型

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摘要

Glycosaminoglycans (GAGs) are linear, structurally diverse, conformationally complex carbohydrate polymers that may contain up to 200 monosaccharides. These characteristics present a challenge for studying GAG conformational thermodynamics at atomic resolution using existing experimental methods. Molecular dynamics (MD) simulations can overcome this challenge but are only feasible for short GAG polymers. To address this problem, we developed an algorithm that applies all conformational parameters contributing to GAG backbone flexibility (i.e., bond lengths, bond angles, and dihedral angles) from unbiased all-atom explicit-solvent MD simulations of short GAG polymers to rapidly construct models of GAGs of arbitrary length. The algorithm was used to generate non-sulfated chondroitin 10- and 20-mer ensembles which were compared to MD-generated ensembles for internal validation. End-to-end distance distributions in constructed and MD-generated ensembles have minimal differences, suggesting that our algorithm produces conformational ensembles that mimic the backbone flexibility seen in simulation. Non-sulfated chondroitin 100- and 200-mer ensembles were constructed within a day, demonstrating the efficiency of the algorithm and reduction in time and computational cost compared to simulation.
机译:糖胺聚糖(GAG)是线性,结构多样,构象复杂的碳水化合物聚合物,最多可包含200个单糖。这些特征为使用现有实验方法研究原子分辨率的GAG构象热力学提出了挑战。分子动力学(MD)模拟可以克服这一挑战,但仅适用于短GAG聚合物。为了解决这个问题,我们开发了一种算法,该算法应用了所有GAG主链柔性的构象参数(即键长,键角和二面角),从短GAG聚合物的无偏全原子显式溶剂MD模拟中快速构建模型任意长度的GAG。该算法用于生成非硫酸化软骨素10聚体和20聚体集合,将其与MD生成的集合进行比较以进行内部验证。构造和MD生成的合奏中的端到端距离分布具有最小的差异,这表明我们的算法产生的构象合奏模仿了仿真中看到的主干灵活性。一天之内即可构建非硫酸软骨素100和200 mer的乐团,与模拟相比,证明了该算法的效率以及时间和计算成本的减少。

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