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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Domain motions in bacteriophage T4 lysozyme: a comparison between molecular dynamics and crystallographic data.
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Domain motions in bacteriophage T4 lysozyme: a comparison between molecular dynamics and crystallographic data.

机译:T4噬菌体溶菌酶中的域运动:分子动力学和晶体学数据之间的比较。

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摘要

A comparison of a series of extended molecular dynamics (MD) simulations of bacteriophage T4 lysozyme in solvent with X-ray data is presented. Essential dynamics analyses were used to derive collective fluctuations from both the simulated trajectories and a distribution of crystallographic conformations. In both cases the main collective fluctuations describe domain motions. The protein consists of an N- and C-terminal domain connected by a long helix. The analysis of the distribution of crystallographic conformations reveals that the N-terminal helix rotates together with either of these two domains. The main domain fluctuation describes a closure mode of the two domains in which the N-terminal helix rotates concertedly with the C-terminal domain, while the domain fluctuation with second largest amplitude corresponds to a twisting mode of the two domains, with the N-terminal helix rotating concertedly with the N-terminal domain. For the closure mode, the difference in hinge-bending angle between the most open and most closed X-ray structure along this mode is 49 degrees. In the MD simulation that shows the largest fluctuation along this mode, a rotation of 45 degrees was observed. Although the twisting mode has much less freedom than the closure mode in the distribution of crystallographic conformations, experimental results suggest that it might be functionally important. Interestingly, the twisting mode is sampled more extensively in all MD simulations than it is in the distribution of X-ray conformations.
机译:提出了一系列扩展的分子动力学(MD)模拟溶剂中的噬菌体T4溶菌酶与X射线数据的比较。基本动力学分析用于从模拟轨迹和晶体构象分布中得出集体波动。在这两种情况下,主要的集体波动都描述了域运动。该蛋白质由长螺旋连接的N和C末端结构域组成。晶体构象分布的分析表明,N-末端螺旋与这两个结构域中的任何一个一起旋转。主畴起伏描述了两个畴的闭合模式,其中N末端螺旋与C端畴协同旋转,而振幅第二大的畴起伏对应于两个畴的扭曲模式,其中N-末端螺旋与N末端结构域一致旋转。对于闭合模式,沿着此模式,最打开和最关闭的X射线结构之间的铰链弯曲角度之差为49度。在显示沿该模式的最大波动的MD模拟中,观察到45度的旋转。尽管在结晶构象的分布中,扭曲模式的自由度比闭合模式小得多,但实验结果表明,它在功能上可能很重要。有趣的是,在所有MD模拟中都比在X射线构象分布中更广泛地采样了扭曲模式。

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