Department of Chemistry, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.
Biophys Chem. 2013 Jan;171:9-15. doi: 10.1016/j.bpc.2012.11.004. Epub 2012 Dec 4.
Sarcosine is one of the most important protecting osmolytes which is also known to counteract the denaturing effect of urea. We used molecular dynamics simulation methods to investigate the mechanism of protein stabilization and counteraction of urea by sarcosine. We found that sarcosine enhanced the tetrahedral structure of water and strengthened its hydrogen bonding network. We also found that sarcosine did not form clusters unlike glycine. Our results show strong interaction between sarcosine and urea molecules. Addition of sarcosine enhanced the urea-water structure and urea-water lifetime indicated an increase in the solvation of urea. These findings suggest that sarcosine indirectly stabilizes protein by enhancing water-water structure thus decreasing the hydrophobic effect and counteracts the effect of urea by increasing the solvation of urea and directly interacting with it leaving urea less available to interact with protein.
肌氨酸是最重要的保护渗透剂之一,也被认为可以对抗尿素的变性作用。我们使用分子动力学模拟方法研究了肌氨酸稳定蛋白质和对抗尿素的作用机制。我们发现肌氨酸增强了水的四面体结构并加强了其氢键网络。我们还发现肌氨酸不像甘氨酸那样形成聚集体。我们的结果表明肌氨酸与尿素分子之间存在强烈的相互作用。添加肌氨酸增强了尿素-水结构和尿素-水的寿命,表明尿素的溶解增加。这些发现表明,肌氨酸通过增强水-水结构间接稳定蛋白质,从而减少疏水性效应,并通过增加尿素的溶解和直接与尿素相互作用来对抗尿素的作用,使尿素减少与蛋白质相互作用的机会。