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本文引用的文献

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Statistical mechanics of polarizable force fields based on classical Drude oscillators with dynamical propagation by the dual-thermostat extended Lagrangian.基于经典 Drude 振荡器的极化力场的统计力学,通过双恒温器扩展拉格朗日动力学传播。
J Chem Phys. 2020 Sep 21;153(11):114108. doi: 10.1063/5.0019987.
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An Empirical Polarizable Force Field Based on the Classical Drude Oscillator Model: Development History and Recent Applications.基于经典德鲁德振子模型的经验性可极化力场:发展历程与近期应用
Chem Rev. 2016 May 11;116(9):4983-5013. doi: 10.1021/acs.chemrev.5b00505. Epub 2016 Jan 27.
3
Thermalized Drude Oscillators with the LAMMPS Molecular Dynamics Simulator.使用 LAMMPS 分子动力学模拟器对热化的 Drude 振荡器进行模拟。
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Determination of Electrostatic Parameters for a Polarizable Force Field Based on the Classical Drude Oscillator.基于经典 Drude 振荡器的极化力场静电参数的确定。
J Chem Theory Comput. 2005 Jan;1(1):153-68. doi: 10.1021/ct049930p.
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Additive and Classical Drude Polarizable Force Fields for Linear and Cyclic Ethers.用于线性和环状醚的加性和经典德鲁德可极化力场。
J Chem Theory Comput. 2007 May;3(3):1120-33. doi: 10.1021/ct600350s.
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Atomic Level Anisotropy in the Electrostatic Modeling of Lone Pairs for a Polarizable Force Field Based on the Classical Drude Oscillator.基于经典德鲁德振荡器的可极化力场中孤对电子静电建模的原子水平各向异性
J Chem Theory Comput. 2006 Nov;2(6):1587-97. doi: 10.1021/ct600180x.
7
CHARMM Drude Polarizable Force Field for Aldopentofuranoses and Methyl-aldopentofuranosides.用于戊醛糖呋喃糖和甲基戊醛糖呋喃糖苷的CHARMM德鲁德极化力场。
J Phys Chem B. 2015 Jun 25;119(25):7846-59. doi: 10.1021/acs.jpcb.5b01767. Epub 2015 Jun 9.
8
Implementation of extended Lagrangian dynamics in GROMACS for polarizable simulations using the classical Drude oscillator model.在GROMACS中使用经典德鲁德振子模型实现用于可极化模拟的扩展拉格朗日动力学。
J Comput Chem. 2015 Jul 15;36(19):1473-9. doi: 10.1002/jcc.23937. Epub 2015 May 12.
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Robustness in the fitting of molecular mechanics parameters.分子力学参数拟合中的稳健性。
J Comput Chem. 2015 May 30;36(14):1083-101. doi: 10.1002/jcc.23897. Epub 2015 Mar 31.
10
All-atom polarizable force field for DNA based on the classical Drude oscillator model.基于经典德鲁德振子模型的DNA全原子可极化力场。
J Comput Chem. 2014 Jun 15;35(16):1219-39. doi: 10.1002/jcc.23611. Epub 2014 Apr 18.

用于脂肪族酮和醛及其相关无环碳水化合物的德鲁德极化力场。

Drude polarizable force field for aliphatic ketones and aldehydes, and their associated acyclic carbohydrates.

作者信息

Small Meagan C, Aytenfisu Asaminew H, Lin Fang-Yu, He Xibing, MacKerell Alexander D

机构信息

Department of Pharmaceutical Sciences, University of Maryland School of Pharmacy, 20 Penn St., Baltimore, MD, 21201, USA.

出版信息

J Comput Aided Mol Des. 2017 Apr;31(4):349-363. doi: 10.1007/s10822-017-0010-0. Epub 2017 Feb 11.

DOI:10.1007/s10822-017-0010-0
PMID:28190218
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5392138/
Abstract

The majority of computer simulations exploring biomolecular function employ Class I additive force fields (FF), which do not treat polarization explicitly. Accordingly, much effort has been made into developing models that go beyond the additive approximation. Development and optimization of the Drude polarizable FF has yielded parameters for selected lipids, proteins, DNA and a limited number of carbohydrates. The work presented here details parametrization of aliphatic aldehydes and ketones (viz. acetaldehyde, propionaldehyde, butaryaldehyde, isobutaryaldehyde, acetone, and butanone) as well as their associated acyclic sugars (D-allose and D-psicose). LJ parameters are optimized targeting experimental heats of vaporization and molecular volumes, while the electrostatic parameters are optimized targeting QM water interactions, dipole moments, and molecular polarizabilities. Bonded parameters are targeted to both QM and crystal survey values, with the models for ketones and aldehydes shown to be in good agreement with QM and experimental target data. The reported heats of vaporization and molecular volumes represent a compromise between the studied model compounds. Simulations of the model compounds show an increase in the magnitude and the fluctuations of the dipole moments in moving from gas phase to condensed phases, which is a phenomenon that the additive FF is intrinsically unable to reproduce. The result is a polarizable model for aliphatic ketones and aldehydes including the acyclic sugars D-allose and D-psicose, thereby extending the available biomolecules in the Drude polarizable FF.

摘要

大多数探索生物分子功能的计算机模拟采用I类加和力场(FF),这类力场没有明确考虑极化作用。因此,人们付出了很多努力来开发超越加和近似的模型。德鲁德可极化力场的开发和优化已经得到了选定脂质、蛋白质、DNA以及少量碳水化合物的参数。本文介绍了脂肪族醛和酮(即乙醛、丙醛、丁醛、异丁醛、丙酮和丁酮)及其相关的无环糖(D-阿洛糖和D-阿洛酮糖)的参数化过程。LJ参数针对实验汽化热和分子体积进行优化,而静电参数针对量子力学(QM)水相互作用、偶极矩和分子极化率进行优化。键合参数以量子力学和晶体测量值为目标,结果表明酮和醛的模型与量子力学和实验目标数据吻合良好。报告的汽化热和分子体积代表了所研究的模型化合物之间的一种折衷。对模型化合物的模拟显示,从气相到凝聚相,偶极矩的大小和波动都有所增加,这是加和力场本质上无法再现的一种现象。其结果是得到了一个包括无环糖D-阿洛糖和D-阿洛酮糖的脂肪族酮和醛的可极化模型,从而扩展了德鲁德可极化力场中可用的生物分子。