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DFTMD studies of β-cellobiose: Conformational preference using implicit solvent

机译:DFTMD研究β-纤维二糖:使用隐性溶剂的构象偏好

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Previous DFT in vacuo studies on the conformational preferences for cellobiose showed that upon optimization the _H-anti conformations were of lower energy than the syn forms. Upon optimization using an implicit solvation method, COSMO, the syn or observed form was still not predicted to be of lower energy than the _H-anti form, even though optimization after addition of several explicit water molecules did show a relative energy difference favoring the syn form. In order to examine the predictive ability of COSMO on this carbohydrate, constant energy dynamics, DFTMD, simulations were carried out on low energy syn and H-anti conformations with and without COSMO included during the dynamics. The resulting analysis confirmed that when COSMO is included in the dynamics, the syn conformations become energetically favored over the H-anti forms suggesting that both solvent and entropy play roles in dictating the solution conformation of cellobiose. Analysis of the dynamic runs includes distributions of selected dihedral angles versus time, conformational transitions, and populations of some quasi-planar, boat, skew forms during the simulations.
机译:先前的DFT纤维二糖构象偏爱的真空研究表明,优化后_H-anti构象的能量低于同型形式。使用隐式溶剂化方法COSMO进行优化后,尽管添加了几个显性水分子后确实显示出相对能量差异有利于合成,但仍未预测出同构或观测形式的能量低于_H-反形式。形成。为了检验COSMO对这种碳水化合物的预测能力,恒定能量动力学DFTMD,在动力学过程中包含和不包含COSMO的情况下,对低能量syn和H-anti构象进行了模拟。所得的分析证实,当动力学中包含COSMO时,syn构象在能量上倾向于H-anti形式,表明溶剂和熵均在决定纤维二糖的溶液构象中起作用。在模拟过程中,对动态行程的分析包括选定的二面角随时间的分布,构象转变以及某些准平面,船形,偏斜形式的总体。

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