Institut für Theoretische Physik, Georg-August-Universität, Friedrich-Hund-Platz 1, Göttingen 37077, Germany.
J Chem Phys. 2010 Apr 21;132(15):155104. doi: 10.1063/1.3369005.
We devise a soft, solvent-free, coarse-grained model for lipid bilayer membranes. The nonbonded interactions take the form of a weighted-density functional, which allows us to describe the thermodynamics of self-assembly and packing effects of the coarse-grained beads in terms of a density expansion of the equation of state and weighting functions that regularize the microscopic bead densities, respectively. Identifying the length and energy scales via the bilayer thickness and the thermal energy scale, k(B)T, the model qualitatively reproduces key characteristics (e.g., bending rigidity, area per molecule, and compressibility) of lipid membranes. We employ this model to study the main phase transition between the fluid and the gel phase of the bilayer membrane. We accurately locate the phase coexistence using free energy calculations and also obtain estimates for the bare and the thermodynamic line tension.
我们设计了一种用于脂质双层膜的柔软、无溶剂、粗粒模型。非键相互作用采用加权密度泛函的形式,这使我们能够根据状态方程的密度展开和分别正则化微观珠密度的加权函数,以描述自组装的热力学和粗粒珠的堆积效应。通过双层膜厚度和热能标度 k(B)T 来确定长度和能量标度,该模型定性地再现了脂质膜的关键特性(例如,弯曲刚度、每个分子的面积和可压缩性)。我们使用该模型研究双层膜的流体相和凝胶相之间的主要相变。我们使用自由能计算准确地定位相共存,并获得裸和热力学线张力的估计。