首页> 外文期刊>Journal of chemical theory and computation: JCTC >Molecular Dynamics Simulation of Cellulose Synthase Subunit D Octamer with Cellulose Chains from Acetic Acid Bacteria: Insight into Dynamic Behaviors and Thermodynamics on Substrate Recognition
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Molecular Dynamics Simulation of Cellulose Synthase Subunit D Octamer with Cellulose Chains from Acetic Acid Bacteria: Insight into Dynamic Behaviors and Thermodynamics on Substrate Recognition

机译:醋酸纤维素纤维素链的分子动力学模拟醋酸纤维素链:洞察动态行为与热力学对基板识别

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摘要

The present study reports the building of a computerized model and molecular dynamics (MD) simulation of cellulose synthase subunit D octamer (CesD) from Komagataeibacter hansenii . CesD was complexed with four cellulose chains having DP = 12 (G12) by model building, which revealed unexpected S-shaped pathways with bending regions. Combined conventional and accelerated MD simulations of CesD complex models were carried out, while the pyranose ring conformations of the glucose residues were restrained to avoid undesirable deviations of the ring conformation from the ~(4)C _(1) form. The N-terminal regions and parts of the secondary structures of CesD established appreciable contacts with the G12 chains. Hybrid quantum mechanical (QM) and molecular mechanical (MM) simulations of the CesD complex model were performed. Glucose residues located at the pathway bends exhibited reversible changes to the ring conformation into either skewed or boat forms, which might be related to the function of CesD in regulating microfibril production.
机译:本研究报道了一个计算机模型的建立和分子动力学(MD)模拟的纤维素合成酶亚基D八聚体(CesD)从汉森小微杆菌。通过模型构建,CesD与四条DP=12(G12)的纤维素链复合,揭示了具有弯曲区域的意外S形路径。对CesD复合物模型进行了常规和加速MD模拟,同时对葡萄糖残基的吡喃糖环构象进行了限制,以避免环构象偏离~(4)C_1形式。CesD的N端区域和部分二级结构与G12链建立了明显的接触。对CesD复合物模型进行了混合量子力学(QM)和分子力学(MM)模拟。位于路径弯曲处的葡萄糖残基表现出环构象的可逆变化,形成倾斜或船形,这可能与CesD调节微纤丝生成的功能有关。

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