首页> 外文期刊>Journal of chemical theory and computation: JCTC >Comparing an All-Atom and a Coarse-Grained Description of Lipid Bilayers in Terms of Enthalpies and Entropies: From MD Simulations to 2D Lattice Models
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Comparing an All-Atom and a Coarse-Grained Description of Lipid Bilayers in Terms of Enthalpies and Entropies: From MD Simulations to 2D Lattice Models

机译:在焓和熵方面比较全原子和粗粒子的脂质双层的描述:从MD模拟到2D晶格模型

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摘要

Simulations of lipid bilayers at different levels of detail is of major interest in computational biophysics. With a recently proposed algorithm, by mapping the information from a Molecular Dynamics (MD) simulation of a lipid bilayer on a 2D lattice model, it is possible to gain insight into the enthalpic and entropic contributions, governing the interaction of adjacent lipids and the individual chain entropy, respectively. The contributions are obtained as a function of the lipid chain order parameter. Here we use this approach for the case of pure DPPC (1,2-dipalmitoyl-sn -glycero-3-phosphocholine) to compare the all-atom CHARMM36 DPPC lipid with the respective MARTINI coarse-grained DPPC lipid. We individually compare the enthalpy and entropy functions as well as the resulting free energies. This allows us to gain new insight into the comparison of both levels of description. When numerically solving the 2D lattice model via Monte Carlo (MC) simulations, the 2D model displays the gel/liquid transition at the same temperature as the respective MD simulation. The dramatic increase in efficiency of the 2D lattice model as compared to the MD simulation allows us to estimate the equilibrium order parameters of the gel phase, inaccessible by the MD simulations even after 3 μs.
机译:不同细节水平的脂质双层的模拟是对计算生物物理学的主要兴趣。利用最近提出的算法,通过从2D晶格模型上映射来自脂质双层的分子动力学(MD)模拟的信息,可以深入了解焓和熵贡献,控制相邻脂质和个体的相互作用连锁熵分别。作为脂链顺序参数的函数获得的贡献。在这里,我们使用这种方法进行纯DPPC的情况(1,2-二普酰基 - Sn-Glycero-3-磷光啉),以将全原子CharmM36 DPPC脂质与相应的Martini粗粒颗粒DPPC脂质进行比较。我们单独比较焓和熵功能以及由此产生的自由能量。这使我们可以获得新的洞察两层描述的比较。当通过Monte Carlo(MC)仿真以数值求解2D晶格模型时,2D模型在与相应的MD模拟相同的温度下显示凝胶/液体过渡。与MD模拟相比,2D晶格模型的效率的显着提高允许我们估计凝胶相的平衡阶数参数,即使在3μs之后也可以被MD仿真估计。

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