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A THEORETICAL STUDY OF D-GLUCOSE, D-GALACTOSE, AND PARENT MOLECULES - SOLVENT EFFECT ON CONFORMATIONAL STABILITIES AND ROTATIONAL MOTIONS OF EXOCYCLIC GROUPS

机译:D-葡萄糖,D-半乳糖和母体分子的理论研究-溶剂对外链族构象稳定性和旋转运动的影响

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摘要

D-Glucopyranose and D-galactopyranose, in their alpha and beta forms, together with some of their mono- and di-substituted parent molecules, were investigated theoretically in order to evaluate the solvent effect on the differential stability of various regions of the potential surfaces. In particular, the aim of this study was to evaluate the solvent effect on the conformational stabilities and the possibility of wide oscillations and/or correlated motions of exocyclic groups in the presence of water. Energies of molecules in aqueous solution were calculated by the polarizable continuum model in conjunction with the semiempirical AM1 method. Water as solvent favours the anti conformation of the exocyclic hydroxyl groups (except the anomeric one), mostly reduces the oscillation amplitude, and lowers the barriers to the rotation of the hydroxymethyl group. Concerted motions of exocyclic groups imply barriers which are somewhat higher, especially in galactose. [References: 49]
机译:从理论上研究了α-和β-形式的D-Glucopyranose和D-galactopyranose以及它们的一些单取代和双取代的母体分子,以评估溶剂对潜在表面各个区域差异稳定性的影响。特别地,该研究的目的是评估溶剂对构象稳定性的影响以及在水的存在下环族基团宽振荡和/或相关运动的可能性。结合极化半连续模型和半经验AM1方法计算水溶液中分子的能量。水作为溶剂有利于环外羟基的反构象(异头基团除外),主要降低振荡幅度,并降低羟甲基旋转的障碍。环外基团的一致运动暗示了更高的屏障,特别是在半乳糖中。 [参考:49]

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