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蛋白质中带电残基的改进相互作用势

Improved interaction potentials for charged residues in proteins.

作者信息

Jensen Kasper P

机构信息

Department of Chemistry, Technical University of Denmark, 2800 Kgs Lyngby, DK, Denmark.

出版信息

J Phys Chem B. 2008 Feb 14;112(6):1820-7. doi: 10.1021/jp077700b. Epub 2008 Jan 19.

DOI:10.1021/jp077700b
PMID:18205348
Abstract

Electrostatic interactions dominate the structure and free energy of biomolecules. To obtain accurate free energies involving charged groups from molecular simulations, OPLS-AA parameters have been reoptimized using Monte Carlo free energy perturbation. New parameters fit a self-consistent, experimental set of hydration free energies for acetate (Asp), propionate (Glu), 4-methylimidazolium (Hip), n-butylammonium (Lys), and n-propylguanidinium (Arg), all resembling charged residue side chains, including beta-carbons. It is shown that OPLS-AA free energies depend critically on the type of water model, TIP4P or TIP3P; i.e., each water model requires specific water-charged molecule interaction potentials. New models (models 1 and 3) are thus described for both water models. Uncertainties in relative free energies of charged residues are approximately 2 kcal/mol with the new parameters, due to variations in system setup (MAEs of ca. 1 kcal/mol) and noise from simulations (ca. 1 kcal/mol). The latter error of approximately 1 kcal/mol contrasts MAEs from standard OPLS-AA of up to 13 kcal/mol for the entire series of charged residues or up to 5 kcal/mol for the cationic series Lys, Arg, and Hip. The new parameters can be used directly in molecular simulations with no modification of neutral residues needed and are envisioned to be particular important in simulations where charged residues change environment.

摘要

静电相互作用主导着生物分子的结构和自由能。为了从分子模拟中获得涉及带电基团的准确自由能,已使用蒙特卡洛自由能微扰法对OPLS-AA参数进行了重新优化。新参数拟合了一组自洽的、关于醋酸根(Asp)、丙酸根(Glu)、4-甲基咪唑鎓(Hip)、正丁铵(Lys)和正丙基胍鎓(Arg)的水化自由能的实验数据,所有这些都类似于带电残基侧链,包括β-碳原子。结果表明,OPLS-AA自由能严重依赖于水模型的类型,即TIP4P或TIP3P;也就是说,每种水模型都需要特定的水-带电分子相互作用势。因此,针对这两种水模型都描述了新的模型(模型1和模型3)。由于系统设置的变化(平均绝对误差约为1 kcal/mol)和模拟噪声(约1 kcal/mol),使用新参数时带电残基相对自由能的不确定性约为2 kcal/mol。后一种约1 kcal/mol的误差与标准OPLS-AA中整个带电残基系列高达13 kcal/mol或阳离子系列Lys、Arg和Hip高达5 kcal/mol的平均绝对误差形成对比。新参数可直接用于分子模拟,无需对中性残基进行修改,并且预计在带电残基改变环境的模拟中尤为重要。

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