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腺苷酸激酶催化 ATP 和 AMP 转化为 ADP 时 LID 和 NMP 结构域运动的动态偶联。

Dynamic coupling between the LID and NMP domain motions in the catalytic conversion of ATP and AMP to ADP by adenylate kinase.

机构信息

Solid State and Structural Chemistry Unit, Indian Institute of Science, Bangalore 560012, India.

出版信息

J Chem Phys. 2011 Jan 21;134(3):035101. doi: 10.1063/1.3516588.

Abstract

The catalytic conversion of adenosine triphosphate (ATP) and adenosine monophosphate (AMP) to adenosine diphosphate (ADP) by adenylate kinase (ADK) involves large amplitude, ligand induced domain motions, involving the opening and the closing of ATP binding domain (LID) and AMP binding domain (NMP) domains, during the repeated catalytic cycle. We discover and analyze an interesting dynamical coupling between the motion of the two domains during the opening, using large scale atomistic molecular dynamics trajectory analysis, covariance analysis, and multidimensional free energy calculations with explicit water. Initially, the LID domain must open by a certain amount before the NMP domain can begin to open. Dynamical correlation map shows interesting cross-peak between LID and NMP domain which suggests the presence of correlated motion between them. This is also reflected in our calculated two-dimensional free energy surface contour diagram which has an interesting elliptic shape, revealing a strong correlation between the opening of the LID domain and that of the NMP domain. Our free energy surface of the LID domain motion is rugged due to interaction with water and the signature of ruggedness is evident in the observed root mean square deviation variation and its fluctuation time correlation functions. We develop a correlated dynamical disorder-type theoretical model to explain the observed dynamic coupling between the motion of the two domains in ADK. Our model correctly reproduces several features of the cross-correlation observed in simulations.

摘要

腺苷三磷酸 (ATP) 和单磷酸腺苷 (AMP) 通过腺苷酸激酶 (ADK) 催化转化为二磷酸腺苷 (ADP),涉及大振幅、配体诱导的结构域运动,涉及 ATP 结合结构域 (LID) 和 AMP 结合结构域 (NMP) 结构域的打开和关闭,在重复的催化循环中。我们使用大规模原子分子动力学轨迹分析、协方差分析和带有显式水分子的多维自由能计算,发现并分析了在打开过程中两个结构域之间运动的有趣动力学耦合。最初,在 NMP 结构域开始打开之前,LID 结构域必须打开一定量。动态相关图显示了 LID 和 NMP 结构域之间有趣的交叉峰,这表明它们之间存在相关运动。这也反映在我们计算的二维自由能表面等高线图中,该图具有有趣的椭圆形,揭示了 LID 结构域和 NMP 结构域打开之间的强相关性。由于与水的相互作用,我们的 LID 结构域运动的自由能表面崎岖不平,在观察到的均方根偏差变化及其波动时间相关函数中可以明显看出崎岖不平的特征。我们开发了一种相关的动态无序型理论模型来解释 ADK 中两个结构域运动之间观察到的动态耦合。我们的模型正确地再现了模拟中观察到的交叉相关的几个特征。

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