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生物分子系统的自适应分辨率模拟。

Adaptive resolution simulations of biomolecular systems.

作者信息

Zavadlav Julija, Bevc Staš, Praprotnik Matej

机构信息

Department of Molecular Modeling, National Institute of Chemistry, Hajdrihova 19, 1001, Ljubljana, Slovenia.

Department of Physics, Faculty of Mathematics and Physics, University of Ljubljana, Jadranska 19, 1000, Ljubljana, Slovenia.

出版信息

Eur Biophys J. 2017 Dec;46(8):821-835. doi: 10.1007/s00249-017-1248-0. Epub 2017 Sep 13.

Abstract

In this review article, we discuss and analyze some recently developed hybrid atomistic-mesoscopic solvent models for multiscale biomolecular simulations. We focus on the biomolecular applications of the adaptive resolution scheme (AdResS), which allows solvent molecules to change their resolution back and forth between atomistic and coarse-grained representations according to their positions in the system. First, we discuss coupling of atomistic and coarse-grained models of salt solution using a 1-to-1 molecular mapping-i.e., one coarse-grained bead represents one water molecule-for development of a multiscale salt solution model. In order to make use of coarse-grained molecular models that are compatible with the MARTINI force field, one has to resort to a supramolecular mapping, in particular to a 4-to-1 mapping, where four water molecules are represented with one coarse-grained bead. To this end, bundled atomistic water models are employed, i.e., the relative movement of water molecules that are mapped to the same coarse-grained bead is restricted by employing harmonic springs. Supramolecular coupling has recently also been extended to polarizable coarse-grained water models with explicit charges. Since these coarse-grained models consist of several interaction sites, orientational degrees of freedom of the atomistic and coarse-grained representations are coupled via a harmonic energy penalty term. The latter aligns the dipole moments of both representations. The reviewed multiscale solvent models are ready to be used in biomolecular simulations, as illustrated in a few examples.

摘要

在这篇综述文章中,我们讨论并分析了一些最近开发的用于多尺度生物分子模拟的混合原子 - 介观溶剂模型。我们重点关注自适应分辨率方案(AdResS)在生物分子方面的应用,该方案允许溶剂分子根据其在系统中的位置在原子尺度和粗粒度表示之间来回改变其分辨率。首先,我们讨论使用1对1分子映射(即一个粗粒度珠子代表一个水分子)来耦合盐溶液的原子模型和粗粒度模型,以开发多尺度盐溶液模型。为了利用与MARTINI力场兼容的粗粒度分子模型,必须采用超分子映射,特别是4对1映射,其中四个水分子由一个粗粒度珠子表示。为此,采用了捆绑原子水模型,即通过使用谐振弹簧来限制映射到同一个粗粒度珠子的水分子的相对运动。超分子耦合最近也扩展到了具有明确电荷的可极化粗粒度水模型。由于这些粗粒度模型由几个相互作用位点组成,原子尺度和粗粒度表示的取向自由度通过一个谐振能量惩罚项耦合。后者使两种表示的偶极矩对齐。如几个例子所示,所综述的多尺度溶剂模型已准备好在生物分子模拟中使用。

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