Department of Pharmaceutical Sciences, School of Pharmacy, University of Maryland, Baltimore, Maryland, USA.
Department of Biological Sciences, Lehigh University, Bethlehem, Pennsylvania, USA.
J Comput Chem. 2022 Feb 15;43(5):359-375. doi: 10.1002/jcc.26795. Epub 2021 Dec 7.
Explicit treatment of electronic polarizability in empirical force fields (FFs) represents an extension over a traditional additive or pairwise FF and provides a more realistic model of the variations in electronic structure in condensed phase, macromolecular simulations. To facilitate utilization of the polarizable FF based on the classical Drude oscillator model, Drude Prepper has been developed in CHARMM-GUI. Drude Prepper ingests additive CHARMM protein structures file (PSF) and pre-equilibrated coordinates in CHARMM, PDB, or NAMD format, from which the molecular components of the system are identified. These include all residues and patches connecting those residues along with water, ions, and other solute molecules. This information is then used to construct the Drude FF-based PSF using molecular generation capabilities in CHARMM, followed by minimization and equilibration. In addition, inputs are generated for molecular dynamics (MD) simulations using CHARMM, GROMACS, NAMD, and OpenMM. Validation of the Drude Prepper protocol and inputs is performed through conversion and MD simulations of various heterogeneous systems that include proteins, nucleic acids, lipids, polysaccharides, and atomic ions using the aforementioned simulation packages. Stable simulations are obtained in all studied systems, including 5 μs simulation of ubiquitin, verifying the integrity of the generated Drude PSFs. In addition, the ability of the Drude FF to model variations in electronic structure is shown through dipole moment analysis in selected systems. The capabilities and availability of Drude Prepper in CHARMM-GUI is anticipated to greatly facilitate the application of the Drude FF to a range of condensed phase, macromolecular systems.
经验力场 (FF) 中电子极化率的显式处理是对传统加和或对力场的扩展,为凝聚相、大分子模拟中的电子结构变化提供了更真实的模型。为了方便使用基于经典 Drude 振子模型的极化力场,CHARMM-GUI 中开发了 Drude Prepper。Drude Prepper 摄取加和的 CHARMM 蛋白质结构文件 (PSF) 和 CHARMM、PDB 或 NAMD 格式的预平衡坐标,从中识别系统的分子成分。这些包括所有残基和连接这些残基的补丁,以及水、离子和其他溶质分子。然后,使用 CHARMM 的分子生成功能,根据这些信息构建基于 Drude FF 的 PSF,然后进行最小化和平衡。此外,还为 CHARMM、GROMACS、NAMD 和 OpenMM 的分子动力学 (MD) 模拟生成输入。通过使用上述模拟包转换和模拟各种异构系统(包括蛋白质、核酸、脂质、多糖和原子离子)来验证 Drude Prepper 协议和输入的验证。在所有研究的系统中都获得了稳定的模拟,包括对泛素的 5 μs 模拟,验证了生成的 Drude PSF 的完整性。此外,通过在选定系统中的偶极矩分析显示了 Drude FF 建模电子结构变化的能力。预计 CHARMM-GUI 中 Drude Prepper 的功能和可用性将极大地促进 Drude FF 在一系列凝聚相、大分子系统中的应用。