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Effects of Water Models on Binding Affinity: Evidence from All-Atom Simulation of Binding of Tamiflu to A/H5N1 Neuraminidase

机译:水模型对结合亲和力的影响:达菲与A / H5N1神经氨酸酶结合的全原子模拟研究

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摘要

The influence of water models SPC, SPC/E, TIP3P, and TIP4P on ligand binding affinity is examined by calculating the binding free energy ΔG bind of oseltamivir carboxylate (Tamiflu) to the wild type of glycoprotein neuraminidase from the pandemic A/H5N1 virus. ΔG bind is estimated by the Molecular Mechanic-Poisson Boltzmann Surface Area method and all-atom simulations with different combinations of these aqueous models and four force fields AMBER99SB, CHARMM27, GROMOS96 43a1, and OPLS-AA/L. It is shown that there is no correlation between the binding free energy and the water density in the binding pocket in CHARMM. However, for three remaining force fields ΔG bind decays with increase of water density. SPC/E provides the lowest binding free energy for any force field, while the water effect is the most pronounced in CHARMM. In agreement with the popular GROMACS recommendation, the binding score obtained by combinations of AMBER-TIP3P, OPLS-TIP4P, and GROMOS-SPC is the most relevant to the experiments. For wild-type neuraminidase we have found that SPC is more suitable for CHARMM than TIP3P recommended by GROMACS for studying ligand binding. However, our study for three of its mutants reveals that TIP3P is presumably the best choice for CHARMM.
机译:水模型SPC,SPC / E,TIP3P和TIP4P对配体结合亲和力的影响是通过计算大剂量A / H5N1病毒的oseltamivir羧酸盐(Tamiflu)与野生型糖蛋白神经氨酸酶的结合自由能ΔG结合来检查的。 ΔG结合通过分子力学-泊松玻尔兹曼表面积法和使用这些水模型和四个力场AMBER99SB,CHARMM27,GROMOS96 43a1和OPLS-AA / L的不同组合的全原子模拟来估​​算。结果表明,CHARMM中结合自由能与结合口袋中的水密度之间没有相关性。但是,对于剩余的三个力场,ΔG键随水密度的增加而衰减。 SPC / E在任何力场中提供的结合力最低,而水的作用在CHARMM中最为明显。与流行的GROMACS建议一致,由AMBER-TIP3P,OPLS-TIP4P和GROMOS-SPC组合获得的结合分数与实验最相关。对于野生型神经氨酸酶,我们发现SPC比GROMACS推荐用于研究配体结合的TIP3P更适合CHARMM。但是,我们对其三个突变体的研究表明,TIP3P可能是CHARMM的最佳选择。

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