Rao Palla Venkata Gopala, Gandhi K S, Ayappa K G
Department of Chemical Engineering, Indian Institute of Science, Bangalore 560012, India.
Langmuir. 2007 Dec 18;23(26):12795-8. doi: 10.1021/la7022902. Epub 2007 Nov 10.
The distribution of hydrophobic solutes, such as methane, enclosed in a nanosized water droplet contained in a reverse micelle of diameter 2.82 nm is investigated using Monte Carlo simulations. The effect of the hydrophobic solute's atomic diameter on the solute-solute potential of mean force is also studied. The study reveals that confinement has a strong influence on the solute's tendency to associate. The potential of mean force exhibits only a single minimum, indicating that the contact pair is the only stable configuration between solutes. The solvent-separated pair that is universally observed for small solutes in bulk water is conspicuously absent. This enhanced hydrophobic effect is attributed to the lack of sufficient water to completely hydrate and stabilize the solvent-separated configurations. The study is expected to be important in understanding the role of hydrophobic forces during protein folding and nucleation under confinement.
利用蒙特卡罗模拟研究了直径为2.82纳米的反胶束中包含的纳米级水滴内甲烷等疏水溶质的分布情况。还研究了疏水溶质的原子直径对溶质-溶质平均力势的影响。研究表明,受限环境对溶质的缔合趋势有很强的影响。平均力势仅呈现一个最小值,表明接触对是溶质之间唯一的稳定构型。在大量水中小溶质普遍观察到的溶剂分隔对明显不存在。这种增强的疏水效应归因于缺乏足够的水来完全水合和稳定溶剂分隔构型。预计该研究对于理解受限环境下蛋白质折叠和成核过程中疏水力的作用具有重要意义。