Kony David B, Hünenberger Philippe H, van Gunsteren Wilfred F
Laboratory of Physical Chemistry, ETH Zürich, CH-8093 Zürich, Switzerland.
Protein Sci. 2007 Jun;16(6):1101-18. doi: 10.1110/ps.062323407.
A series of explicit-solvent molecular dynamics simulations of the protein ubiquitin are reported, which investigate the effect of environmental factors (presence of methanol cosolvent in the aqueous solution, neutral or low pH value, room or elevated temperature) on the structure, stability, and dynamics of the protein. The simulations are initiated either from the native structure of the protein or from a model of a partially folded state (A-state) that is known to exist at low pH in methanol-water mixtures. The main results of the simulations are: (1) The ubiquitin native structure is remarkably stable at neutral pH in water; (2) the addition of the methanol cosolvent enhances the stability of the secondary structure but weakens tertiary interactions within the protein; (3) this influence of methanol on the protein structure is enhanced at low pH, while the effect of lowering the pH in pure water is limited; and (4) the A-state of ubiquitin can be described as a set of relatively rigid secondary structure elements (a native-like beta-sheet and native-like alpha-helix plus two nonnative alpha-helices) connected by flexible linkers.
本文报道了一系列关于蛋白质泛素的显式溶剂分子动力学模拟,研究了环境因素(水溶液中甲醇共溶剂的存在、中性或低pH值、室温或高温)对蛋白质结构、稳定性和动力学的影响。模拟要么从蛋白质的天然结构开始,要么从已知在甲醇 - 水混合物中低pH值下存在的部分折叠状态(A态)模型开始。模拟的主要结果如下:(1)泛素天然结构在水中中性pH下非常稳定;(2)添加甲醇共溶剂增强了二级结构的稳定性,但削弱了蛋白质内部的三级相互作用;(3)在低pH下,甲醇对蛋白质结构的这种影响增强,而在纯水中降低pH的影响有限;(4)泛素的A态可描述为由柔性接头连接的一组相对刚性的二级结构元件(类似天然的β - 折叠和类似天然的α - 螺旋加上两个非天然α - 螺旋)。