Roccatano Danilo, Sbardella Gianluca, Aschi Massimiliano, Amicosante Gianfranco, Bossa Cecilia, Di Nola Alfredo, Mazza Fernando
Dipartimento di Chimica, Ingegneria Chimica e Materiali, Universitá degli Studi, V. Vetoio, 67010, L'Aquila, Italy.
J Comput Aided Mol Des. 2005 May;19(5):329-40. doi: 10.1007/s10822-005-7003-0.
The dynamical aspects of the fully hydrated TEM-1 beta-lactamase have been determined by a 5 ns Molecular Dynamics simulation. Starting from the crystallographic coordinates, the protein shows a relaxation in water with an overall root mean square deviation from the crystal structure increasing up to 0.17 nm, within the first nanosecond. Then a plateau is reached and the molecule fluctuates around an equilibrium conformation. The results obtained in the first nanosecond are in agreement with those of a previous simulation (Diaz et al., J. Am. Chem. Soc., (2003) 125, 672-684). The successive equilibrium conformation in solution shows an increased mobility characterized by the following aspects. A flap-like translational motion anchors the omega-loop to the body of the enzyme. A relevant part of the backbone dynamics implies a rotational motion of one domain relative to the other. The water molecules in the active site can exchange with different residence times. The H-bonding networks formed by the catalytic residues are frequently interrupted by water molecules that could favour proton transfer reactions. An additional simulation, where the aspartyl dyad D214-D233 was considered fully deprotonated, shows that the active site is destabilized.
通过5纳秒的分子动力学模拟确定了完全水合的TEM-1β-内酰胺酶的动力学方面。从晶体学坐标开始,蛋白质在水中表现出弛豫,在第一纳秒内与晶体结构的整体均方根偏差增加到0.17纳米。然后达到一个平稳期,分子在平衡构象周围波动。在第一纳秒内获得的结果与先前模拟的结果一致(迪亚兹等人,《美国化学会志》,(2003年)125卷,672 - 684页)。溶液中的连续平衡构象表现出增加的流动性,其特征如下。一种类似襟翼的平移运动将ω环固定在酶的主体上。主链动力学的一个相关部分意味着一个结构域相对于另一个结构域的旋转运动。活性位点中的水分子可以以不同的停留时间进行交换。由催化残基形成的氢键网络经常被可能有利于质子转移反应的水分子打断。另一个模拟,其中天冬氨酸二联体D214 - D233被认为完全去质子化,结果表明活性位点不稳定。