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使用量子力学/分子力学混合方法对Abl激酶抑制剂进行结合自由能计算。

Binding free energy calculation with QM/MM hybrid methods for Abl-Kinase inhibitor.

作者信息

Dubey Kshatresh Dutta, Ojha Rajendra Prasad

机构信息

Biophysics Unit, Department of Physics, DDU Gorakhpur University, Gorakhpur, 273009 India.

出版信息

J Biol Phys. 2011 Jan;37(1):69-78. doi: 10.1007/s10867-010-9199-z. Epub 2010 Sep 2.

Abstract

We report a Quantum mechanics/Molecular Mechanics-Poisson-Boltzmann/ Surface Area (QM/MM-PB/SA) method to calculate the binding free energy of c-Abl human tyrosine kinase by combining the QM and MM principles where the ligand is treated quantum mechanically and the rest of the receptor by classical molecular mechanics. To study the role of entropy and the flexibility of the protein ligand complex in a solvated environment, molecular dynamics calculations are performed using a hybrid QM/MM approach. This work shows that the results of the QM/MM approach are strongly correlated with the binding affinity. The QM/MM interaction energy in our reported study confirms the importance of electronic and polarization contributions, which are often neglected in classical MM-PB/SA calculations. Moreover, a comparison of semi-empirical methods like DFTB-SCC, PM3, MNDO, MNDO-PDDG, and PDDG-PM3 is also performed. The results of the study show that the implementation of a DFTB-SCC semi-empirical Hamiltonian that is derived from DFT gives better results than other methods. We have performed such studies using the AMBER molecular dynamic package for the first time. The calculated binding free energy is also in agreement with the experimentally determined binding affinity for c-Abl tyrosine kinase complex with Imatinib.Electronic supplementary material The online version of this article (doi:10.1007/s10867-010-9199-z) contains supplementary material, which is available to authorized users.

摘要

我们报告了一种量子力学/分子力学-泊松-玻尔兹曼/表面积(QM/MM-PB/SA)方法,通过结合量子力学和分子力学原理来计算c-Abl人酪氨酸激酶的结合自由能,其中配体采用量子力学处理,受体的其余部分采用经典分子力学处理。为了研究熵和蛋白质-配体复合物在溶剂化环境中的灵活性的作用,使用混合QM/MM方法进行分子动力学计算。这项工作表明,QM/MM方法的结果与结合亲和力密切相关。我们报告的研究中的QM/MM相互作用能证实了电子和极化贡献的重要性,而这些在经典的MM-PB/SA计算中常常被忽略。此外,还对DFTB-SCC、PM3、MNDO、MNDO-PDDG和PDDG-PM3等半经验方法进行了比较。研究结果表明,源自密度泛函理论(DFT)的DFTB-SCC半经验哈密顿量的实现比其他方法给出了更好的结果。我们首次使用AMBER分子动力学软件包进行了此类研究。计算得到的结合自由能也与实验测定的c-Abl酪氨酸激酶与伊马替尼复合物的结合亲和力一致。电子补充材料 本文的在线版本(doi:10.1007/s10867-010-9199-z)包含补充材料,授权用户可以获取。

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