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Counteraction of Urea by Trimethylamine N-Oxide Is Due to Direct Interaction

机译:三甲胺N-氧化物对尿素的反作用是由于直接相互作用

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摘要

Trimethylamine N-oxide (TMAO) is a naturally occurring osmolyte that stabilizes proteins, induces folding, and counteracts the denaturing effects of urea, pressure, and ice. To establish the mechanism behind these effects, isotopic substitution neutron-scattering measurements were performed on aqueous solutions of TMAO and 1:1 TMAO-urea at a solute mole fraction of 0.05. The partial pair distribution functions were extracted using the empirical potential structure refinement method. The results were compared with previous results obtained with isosteric tert-butanol, as well as the available data from spectroscopy and molecular-dynamics simulations. In solution, the oxygen atom of TMAO is strongly hydrogen-bonded to, on average, between two and three water molecules, and the hydrogen-bond network is tighter in water than in pure water. In TMAO-urea solutions, the oxygen atom in TMAO preferentially forms hydrogen bonds with urea. This explains why the counteraction is completed at a 2:1 urea/TMAO concentration ratio, independently of urea concentration. These results strongly support models for the effect of TMAO on the stability of proteins based on a modification of the simultaneous equilibria that control hydrogen bonding between the peptide backbone and water or intramolecular sites, without any need for direct interaction between TMAO and the protein.
机译:三甲胺N-氧化物(TMAO)是一种天然的渗透压剂,可稳定蛋白质,诱导折叠并抵消尿素,压力和冰的变性作用。为了建立这些作用背后的机理,对溶质摩尔分数为0.05的TMAO和1:1 TMAO-脲水溶液进行了同位素取代中子散射测量。使用经验势结构细化方法提取部分对分布函数。将结果与等规叔丁醇获得的先前结果以及光谱学和分子动力学模拟的可用数据进行了比较。在溶液中,TMAO的氧原子平均与两个和三个水分子之间牢固地氢键合,并且氢键网络在水中比在纯水中更紧密。在TMAO-脲溶液中,TMAO中的氧原子优先与尿素形成氢键。这解释了为什么在尿素/ TMAO浓度比为2:1的情况下,与尿素浓度无关地完成反作用。这些结果强有力地支持了TMAO对蛋白质稳定性的影响的模型,该模型基于同时平衡的修饰,该平衡控制肽主链与水或分子内位点之间的氢键,而无需TMAO与蛋白质之间的直接相互作用。

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