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通过晶体学分析确定蛋白质中水分子的偶极矩和结合能

Dipole Moment and Binding Energy of Water in Proteins from Crystallographic Analysis.

作者信息

Morozenko A, Leontyev I V, Stuchebrukhov A A

机构信息

Department of Chemistry, University of California Davis , One Shields Avenue, Davis, California 95616, United States.

出版信息

J Chem Theory Comput. 2014 Oct 14;10(10):4618-4623. doi: 10.1021/ct500358r. Epub 2014 Sep 15.

Abstract

The energetics of water molecules in proteins is studied using the water placement software Dowser. We compared the water position predictions for 14 high-resolution crystal structures of oligopeptide-binding protein (OppA) containing a large number of resolved internal water molecules. From the analysis of the outputs of Dowser with variable parameters and comparison with experimental X-ray data, we derived an estimate of the average dipole moment of water molecules located in the internal cavities of the protein and their binding energies. The water parameters thus obtained from the experimental data are then analyzed within the framework of charge-scaling theory developed recently by this group; the parameters are shown to be in good agreement with the predictions that the theory makes for the dipole moment in a protein environment. The water dipole in the protein environment is found to be much different from that in the bulk and in such models as SPC or TIPnP. The role of charge scaling due to electronic polarizability of the protein is discussed.

摘要

使用水分子放置软件Dowser研究蛋白质中水分子的能量学。我们比较了含有大量已解析内部水分子的寡肽结合蛋白(OppA)的14个高分辨率晶体结构的水位置预测。通过对具有可变参数的Dowser输出进行分析,并与实验X射线数据进行比较,我们得出了位于蛋白质内部腔中的水分子的平均偶极矩及其结合能的估计值。然后,在该研究小组最近开发的电荷标度理论框架内分析从实验数据中获得的水参数;结果表明这些参数与该理论对蛋白质环境中偶极矩的预测非常吻合。发现蛋白质环境中的水偶极矩与本体中的以及诸如SPC或TIPnP等模型中的水偶极矩有很大不同。讨论了由于蛋白质的电子极化率导致的电荷标度的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e54/4196742/a2f55b88289c/ct-2014-00358r_0001.jpg

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