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使用分子力学和连续介质静电学估计蛋白质-配体结合自由能。应用于HIV-1蛋白酶抑制剂。

Protein-ligand binding free energy estimation using molecular mechanics and continuum electrostatics. Application to HIV-1 protease inhibitors.

作者信息

Zoete V, Michielin O, Karplus M

机构信息

Laboratoire de Chimie Biophysique, Institut de Science et d'Ingénierie Supramoléculaires, Université Louis Pasteur, 8 allée Gaspard Monge, BP 70028 Strasbourg Cedex, France.

出版信息

J Comput Aided Mol Des. 2003 Dec;17(12):861-80. doi: 10.1023/b:jcam.0000021882.99270.4c.

Abstract

A method is proposed for the estimation of absolute binding free energy of interaction between proteins and ligands. Conformational sampling of the protein-ligand complex is performed by molecular dynamics (MD) in vacuo and the solvent effect is calculated a posteriori by solving the Poisson or the Poisson-Boltzmann equation for selected frames of the trajectory. The binding free energy is written as a linear combination of the buried surface upon complexation, SASbur, the electrostatic interaction energy between the ligand and the protein, Eelec, and the difference of the solvation free energies of the complex and the isolated ligand and protein, deltaGsolv. The method uses the buried surface upon complexation to account for the non-polar contribution to the binding free energy because it is less sensitive to the details of the structure than the van der Waals interaction energy. The parameters of the method are developed for a training set of 16 HIV-1 protease-inhibitor complexes of known 3D structure. A correlation coefficient of 0.91 was obtained with an unsigned mean error of 0.8 kcal/mol. When applied to a set of 25 HIV-1 protease-inhibitor complexes of unknown 3D structures, the method provides a satisfactory correlation between the calculated binding free energy and the experimental pIC5o without reparametrization.

摘要

提出了一种估算蛋白质与配体之间相互作用的绝对结合自由能的方法。蛋白质-配体复合物的构象采样通过真空中的分子动力学(MD)进行,并且通过求解轨迹选定帧的泊松方程或泊松-玻尔兹曼方程来事后计算溶剂效应。结合自由能被写成络合时掩埋表面积(SASbur)、配体与蛋白质之间的静电相互作用能(Eelec)以及复合物与分离的配体和蛋白质的溶剂化自由能之差(ΔGsolv)的线性组合。该方法使用络合时的掩埋表面积来考虑对结合自由能的非极性贡献,因为它比范德华相互作用能对结构细节的敏感性更低。该方法的参数是针对一组已知三维结构的16种HIV-1蛋白酶-抑制剂复合物开发的。获得的相关系数为0.91,无符号平均误差为0.8千卡/摩尔。当应用于一组25种未知三维结构的HIV-1蛋白酶-抑制剂复合物时,该方法在不重新参数化的情况下,在计算的结合自由能与实验pIC50之间提供了令人满意的相关性。

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