Institute of Chemistry and The Fritz Haber Research Center, The Hebrew University of Jerusalem, Safra Campus, Jerusalem 91904, Israel.
J Phys Chem B. 2011 Feb 3;115(4):624-34. doi: 10.1021/jp109780n. Epub 2010 Dec 27.
In aqueous solutions, trehalose possesses a high propensity to form hydrogen bonds with water as well as other trehalose molecules. This hydrogen bonding not only affects water structure but also promotes extensive concentration dependent aggregation of trehalose molecules, which may impact trehalose's role as a protective cosolute to biomacromolecules. To study the association of trehalose in aqueous solutions over a wide concentration range, we used molecular dynamics simulations based on two different force fields, as well as vapor pressure osmometry. By analyzing trehalose cluster size and fractal dimension in simulations, we estimate the cluster percolation threshold at 1.5-2.2 m. Experimentally, trehalose solutions showed positive deviations from ideal van't Hoff's law that grew with concentration. These variations in osmotic pressure can be explained using a simple equation of state that accounts for the repulsive excluded volume interactions between trehalose molecules as well as attractions reflected in sugar clustering. We find that simulations with both applied force fields result in reasonable representations of the solution equation of state. However, in contrast to experiments, the balance between the repulsive and attractive trehalose-trehalose interactions in simulations results in a slightly negative deviation from ideality, probably due to the moderately overaggregative nature of the force fields used.
在水溶液中,海藻糖与水以及其他海藻糖分子有形成氢键的高倾向。这种氢键不仅影响水的结构,还促进海藻糖分子广泛的浓度依赖聚集,这可能影响海藻糖作为生物大分子保护共溶质的作用。为了在较宽的浓度范围内研究海藻糖在水溶液中的缔合作用,我们使用了基于两种不同力场的分子动力学模拟以及蒸汽压渗透压法。通过分析模拟中海藻糖簇的大小和分形维数,我们估计簇渗透阈值在 1.5-2.2 m 处。实验上,海藻糖溶液表现出偏离理想 van't Hoff 定律的正偏差,该偏差随浓度而增大。渗透压的这些变化可以用一个简单的状态方程来解释,该方程考虑了海藻糖分子之间的排斥性排除体积相互作用以及糖簇化反映的吸引力。我们发现,应用两种力场的模拟都能合理地表示溶液的状态方程。然而,与实验相反,模拟中海藻糖-海藻糖相互作用的排斥和吸引之间的平衡导致与理想状态的略微负偏差,这可能是由于所使用的力场的适度过聚集性质。