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DEHYDRATION OF THE CYCLODEXTRINS - A MODEL SYSTEM FOR THE INTERACTIONS OF BIOMOLECULES WITH WATER

机译:环糊精的脱水-生物分子与水相互作用的模型系统

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The thermodynamics of hydration of biomolecules is experimentally studied in the beta-cyclodextrin (beta-CD), which contains water molecules in a range of configurations and has been proposed as a model system for complex biomolecules. The thermal measurements point to the role of a structural transition from the hydrated beta-CD (phase I) to a ''dehydrated'' form (phase IT). We show that dehydration in phase I is assisted by a ''compensation mechanism'' for which beta-CD contributes a constant amount of energy for each H2O mole. Despite the presence of different types of H2O's, water losses in phase I:are accurately described in terms of this energy and the isosteric molar enthalpy of dehydration Moreover, in going from the fully hydrated to the fully dehydrated form, the contribution of beta-CD to dehydration is over all equal to the enthalpy of transition from phase I to phase Il. Our analysis yields the changes of an enthalpy associated with the biomolecule alone as a function of the water content. In the case of beta-CD, we can sketch a qualitative phase diagram, which assists the interpretation of details of our thermal experiments. The role of kinetic factors in the attainment of the thermodynamic equilibrium is investigated with H-2-NMR in samples recrystallized from heavy water. We find that, over a wide range of hydration levels, water molecules have a liquidlike diffusion, which, together with the compensation mechanism, explains the fast and nearly reversible dehydration of the beta-CD. (C) 1995 American Institute of Physics. [References: 31]
机译:在β-环糊精(β-CD)中对生物分子的水合热力学进行了实验研究,该β-环糊精含有多种构型的水分子,并已被提议作为复杂生物分子的模型系统。热测量指出了从水合β-CD(I相)到“脱水”形式(IT相)的结构转变的作用。我们表明,在“补偿机制”的帮助下,I相的脱水作用为β-CD贡献了每个H2O摩尔恒定量的能量。尽管存在不同类型的H2O,但根据该能量和脱水的等规摩尔焓,准确描述了I:相中的失水。此外,从完全水合转变为完全脱水时,β-CD的贡献脱水总的来说等于从I相到II相的转变焓。我们的分析得出与生物分子相关的焓随水含量的变化。对于β-CD,我们可以画出一个定性相图,这有助于解释我们的热实验的细节。用H-2-NMR在重水中重结晶的样品中研究了动力学因素在达到热力学平衡中的作用。我们发现,在广泛的水合水平范围内,水分子具有类似液体的扩散,这与补偿机制一起解释了β-CD的快速且几乎可逆的脱水。 (C)1995年美国物理研究所。 [参考:31]

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