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Accurate treatments of electrostatics for computer simulations of biological systems: A brief survey of developments and existing problems

Accurate treatments of electrostatics for computer simulations of biological systems: A brief survey of developments and existing problems
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摘要 Modern computer simulations of biological systems often involve an explicit treatment of the complex interactions among a large number of molecules. While it is straightforward to compute the short-ranged Van der Waals interaction in classical molecular dynamics simulations, it has been a long-lasting issue to develop accurate methods for the longranged Coulomb interaction. In this short review, we discuss three types of methodologies for the accurate treatment of electrostatics in simulations of explicit molecules: truncation-type methods, Ewald-type methods, and mean-field-type methods. Throughout the discussion, we brief the formulations and developments of these methods, emphasize the intrinsic connections among the three types of methods, and focus on the existing problems which are often associated with the boundary conditions of electrostatics. This brief survey is summarized with a short perspective on future trends along the method developments and applications in the field of biological simulations. Modern computer simulations of biological systems often involve an explicit treatment of the complex interactions among a large number of molecules. While it is straightforward to compute the short-ranged Van der Waals interaction in classical molecular dynamics simulations, it has been a long-lasting issue to develop accurate methods for the longranged Coulomb interaction. In this short review, we discuss three types of methodologies for the accurate treatment of electrostatics in simulations of explicit molecules: truncation-type methods, Ewald-type methods, and mean-field-type methods. Throughout the discussion, we brief the formulations and developments of these methods, emphasize the intrinsic connections among the three types of methods, and focus on the existing problems which are often associated with the boundary conditions of electrostatics. This brief survey is summarized with a short perspective on future trends along the method developments and applications in the field of biological simulations.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第12期1-7,共7页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant Nos.91127015 and 21522304) the Open Project from the State Key Laboratory of Theoretical Physics the Innovation Project from the State Key Laboratory of Supramolecular Structure and Materials
关键词 Ewald sum local molecular field theory symmetry-preserving mean field theory Ewald sum,local molecular field theory,symmetry-preserving mean field theory
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  • 1Brooks B R, Brooks C L, Mackerell A D, et al. 2009 J. Comput. Chem. 30 1545.
  • 2Case D A, Cheatham T E, Darden T, Gohlke H, Luo R, Merz K M, Onufriev A, Simmerling C, Wang B and Woods R J 2005 J. Comput. Chem. 26 1668.
  • 3Christen M, Hnenberger P H, Bakowies D, et al. 2005 J. Comput. Chem. 26 1719.
  • 4Pronk S, Pll S, Schulz R, et al. 2013 Bioinformatics 29 845.
  • 5Plimpton S 1995 J. Comput. Phys. 117 1.
  • 6Smith W and Todorov I T 2006 Molecular Simulation 32 935.
  • 7Bowers K, Chow E, Xu H, et al. 2006 Proceedings of the ACM/IEEE (2006), pp. 43-43.
  • 8Mackerell A D, Wiorkiewicz-Kuczera J and Karplus M 1995 J. Am. Chem. Soc. 117 11946.
  • 9Mackerell A D 2004 J. Comput. Chem. 25 1584.
  • 10Vanommeslaeghe K, Hatcher E, Acharya C, et al. 2010 J. Comput. Chem. 31 671.

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