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粗粒化 MARTINI 力场的极化水分子模型。

Polarizable water model for the coarse-grained MARTINI force field.

机构信息

Department of Physics of Biological Systems, Institute of Physics, National Academy of Sciences of Ukraine, Kiev, Ukraine.

出版信息

PLoS Comput Biol. 2010 Jun 10;6(6):e1000810. doi: 10.1371/journal.pcbi.1000810.

Abstract

Coarse-grained (CG) simulations have become an essential tool to study a large variety of biomolecular processes, exploring temporal and spatial scales inaccessible to traditional models of atomistic resolution. One of the major simplifications of CG models is the representation of the solvent, which is either implicit or modeled explicitly as a van der Waals particle. The effect of polarization, and thus a proper screening of interactions depending on the local environment, is absent. Given the important role of water as a ubiquitous solvent in biological systems, its treatment is crucial to the properties derived from simulation studies. Here, we parameterize a polarizable coarse-grained water model to be used in combination with the CG MARTINI force field. Using a three-bead model to represent four water molecules, we show that the orientational polarizability of real water can be effectively accounted for. This has the consequence that the dielectric screening of bulk water is reproduced. At the same time, we parameterized our new water model such that bulk water density and oil/water partitioning data remain at the same level of accuracy as for the standard MARTINI force field. We apply the new model to two cases for which current CG force fields are inadequate. First, we address the transport of ions across a lipid membrane. The computed potential of mean force shows that the ions now naturally feel the change in dielectric medium when moving from the high dielectric aqueous phase toward the low dielectric membrane interior. In the second application we consider the electroporation process of both an oil slab and a lipid bilayer. The electrostatic field drives the formation of water filled pores in both cases, following a similar mechanism as seen with atomistically detailed models.

摘要

粗粒化(CG)模拟已成为研究各种生物分子过程的重要工具,可用于探索传统原子分辨率模型无法企及的时间和空间尺度。CG 模型的主要简化之一是溶剂的表示,溶剂要么被隐含表示,要么被显式表示为范德华粒子。这样就没有考虑到极化的影响,因此无法根据局部环境适当屏蔽相互作用。鉴于水作为生物系统中普遍存在的溶剂的重要作用,其处理对于从模拟研究中得出的性质至关重要。在这里,我们参数化了一个可极化的粗粒化水模型,以便与 CG MARTINI 力场结合使用。我们使用一个三珠模型来表示四个水分子,结果表明可以有效地考虑真实水的取向极化率。这导致可以再现体相水的介电屏蔽。同时,我们对我们的新水模型进行了参数化,使得体相水密度和油/水分配数据仍然与标准 MARTINI 力场具有相同的精度水平。我们将新模型应用于两种当前 CG 力场不足的情况。首先,我们解决了离子跨脂质膜的传输问题。计算得到的平均力势表明,当离子从高介电水性相移动到低介电膜内部时,它们现在会自然感受到介电介质的变化。在第二个应用中,我们考虑了油片和脂质双层的电穿孔过程。静电场在这两种情况下都驱动了充满水的孔的形成,遵循与原子细节模型中看到的类似的机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dbb4/2883601/5cd5a63724ad/pcbi.1000810.g001.jpg

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