School of Physics and Astronomy, University of Leeds, Leeds LS2 9JT, UK.
Phys Chem Chem Phys. 2022 Sep 14;24(35):21216-21222. doi: 10.1039/d2cp02475f.
Trimethylamine -oxide (TMAO) and urea are small organic biological molecules. While TMAO is known as a protective osmolyte that promotes the native form of biomolecules, urea is a denaturant. An understanding of the impact of TMAO and urea on water structure may aid in uncovering the molecular mechanisms that underlie this activity. Here we investigate binary solutions of TMAO-water, urea-water and ternary solutions of TMAO-urea-water using NMR spectroscopy at 300 K. An enhancement of the total hydrogen bonding in water was found upon the addition of TMAO and this effect was neutralised by a mole ratio of 1-part TMAO to 4-parts urea. Urea was found to have little effect on the strength of water's hydrogen bonding network and the dynamics of water molecules. Evidence was found for a weak interaction between TMAO and urea. Taken together, these results suggest that TMAO's function as a protective osmolyte, and its counteraction of urea, may be driven by the strength of its hydrogen bond interactions with water, and by a secondary reinforcement of water's own hydrogen bond network. They also suggest that the TMAO-urea complex forms through the donation of a hydrogen bond by urea.
三甲胺氧化物(TMAO)和尿素是两种小型生物有机分子。TMAO 作为一种保护渗透物,能促进生物分子的天然形态,而尿素则是一种变性剂。了解 TMAO 和尿素对水结构的影响,可能有助于揭示其活性的分子机制。本研究采用 300K 的 NMR 光谱法,对 TMAO-水、尿素-水二元溶液和 TMAO-尿素-水三元溶液进行了研究。结果发现,TMAO 的添加增强了水的总氢键,且当 TMAO 与尿素的摩尔比为 1:4 时,这种效应被中和。尿素对水氢键网络的强度和水分子的动力学几乎没有影响。此外,还发现了 TMAO 和尿素之间存在弱相互作用的证据。综上所述,这些结果表明,TMAO 作为一种保护渗透物的功能,以及其对尿素的拮抗作用,可能是由其与水的氢键相互作用强度以及水自身氢键网络的二次强化所驱动。它们还表明,TMAO-尿素复合物是通过尿素提供氢键形成的。