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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Toward Quantitative Coarse-Grained Models of Lipids with Fluids Density Functional Theory
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Toward Quantitative Coarse-Grained Models of Lipids with Fluids Density Functional Theory

机译:流体密度泛函理论的脂质粗粒定量模型

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We describe methods to determine optimal coarse-grained models of lipid bilayers for use in fluids density functional theory (fluids-DFT) calculations. Both coarse-grained lipid architecture and optimal parametrizations of the models based on experimental measures are discussed in the context of dipalmitoylphosphatidylcholine (DPPC) lipid bilayers in water. The calculations are based on a combination of the modified-iSAFT theory for bonded systems and an accurate fundamental measures theory (FMT) for hard sphere reference fluids. We furthermore discuss a novel approach for pressure control in the fluids-DFT calculations that facilitates both partitioning studies and zero tension control for the bilayer studies. A detailed discussion of the numerical implementations for both solvers and pressure control capabilities are provided. We show that it is possible to develop a coarse-grained lipid bilayer model that is consistent with experimental properties (thickness and area per lipid) of DPPC provided that the coarse-graining is not too extreme. As a final test of the model, we find that the predicted area compressibility moduli and lateral pressure profiles of the optimized models are in reasonable agreement with prior results.
机译:我们描述了确定用于流体密度泛函理论(fluids-DFT)计算的脂质双层的最佳粗粒度模型的方法。在水中的二棕榈酰磷脂酰胆碱(DPPC)脂质双层中,讨论了粗粒脂质结构和基于实验方法的模型的最佳参数化。计算是基于结合系统的改良iSAFT理论和针对硬球参考流体的精确基础测量理论(FMT)的结合。我们进一步讨论了一种用于流体-DFT计算中压力控制的新方法,该方法既有利于分区研究,又有利于双层研究的零张力控制。提供了求解器和压力控制功能的数值实现的详细讨论。我们表明,有可能开发出与DPPC的实验特性(厚度和每个脂质的面积)相一致的粗粒脂质双层模型,但前提是粗粒不是太极端。作为模型的最终测试,我们发现优化模型的预测区域压缩率模量和侧向压力曲线与先前的结果合理吻合。

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