Homi Bhabha National Institute , Anushaktinagar, Mumbai 400094 , India.
J Phys Chem B. 2018 Aug 30;122(34):8220-8232. doi: 10.1021/acs.jpcb.8b02411. Epub 2018 Aug 21.
Atomistic molecular dynamics simulations have been used to investigate differences in the characteristics of the aqueous solutions of two structurally similar, biologically important molecules, namely, tert-butyl alcohol (TBA) and trimethylamine- N-oxide (TMAO). By analyzing radial distribution functions, preferential solvation factors, and the number of nearest neighbors, structural characteristics of the two aqueous solutions are found to be dramatically different. By examining the distribution of nearest neighbor solute and solvent molecules in these two solutions, it is found that the aqueous solution of TMAO is homogeneous, whereas that of TBA is not. Further scrutiny of TBA-TBA radial distribution function at a high concentration by splitting the surrounding TBA molecules into two hemispheres demonstrates that the TBA aggregation occurs not only from the side of methyl moieties of TBA as expected in hydrophobicity-induced aggregation, but also from the side of the polar C-OH group. To analyze the effect of concentration of the two solute molecules (TBA and TMAO) on the local structure of water, tetrahedral order parameter and distributions of tetrahedral angles and hydrogen-bonding angles have been calculated for both the solutions. It is surprising to see that at high concentrations, the local water structure in the TMAO solution is more disrupted compared to the same in the TBA solution. Finally, the action of these two solutes on the folding-unfolding behavior of Trp-cage miniprotein has been analyzed and their contrasting activities toward the protein stability are correlated to the strikingly different behavior of their aqueous solutions.
运用原子分子动力学模拟方法,研究了两种结构相似的、具有生物学重要性的分子,即叔丁醇(TBA)和三甲胺-N-氧化物(TMAO)在水溶液中的特性差异。通过分析径向分布函数、优先溶剂化因子和最近邻数量,发现这两种水溶液的结构特征存在显著差异。通过检查这两种溶液中最近邻溶质和溶剂分子的分布,发现 TMAO 水溶液是均匀的,而 TBA 水溶液则不是。进一步研究 TBA 在高浓度下的 TBA-TBA 径向分布函数,将周围的 TBA 分子分为两个半球,可以证明 TBA 的聚集不仅发生在 TBA 的疏水性诱导聚集所预期的甲基部分的一侧,也发生在极性 C-OH 基团的一侧。为了分析这两种溶质分子(TBA 和 TMAO)的浓度对水局部结构的影响,计算了两种溶液的四面体型有序参数以及四面体型角和氢键角的分布。令人惊讶的是,在高浓度下,TMAO 溶液中的水局部结构比 TBA 溶液中的更混乱。最后,分析了这两种溶质对 Trp-cage 小蛋白折叠-去折叠行为的影响,并将它们对蛋白质稳定性的不同活性与它们水溶液中截然不同的行为相关联。