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Geometrical properties of gel and fluid clusters in DMPC/DSPC bilayers: Monte Carlo simulation approach using a two-state model.

机译:DMPC / DSPC双层中凝胶和流体团簇的几何特性:使用二态模型的蒙特卡罗模拟方法。

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摘要

In this paper the geometrical properties of gel and fluid clusters of equimolar dimyristoylphosphatidylcholine/distearoylphosphatidylcholine (DMPC/DSPC) lipid bilayers are calculated by using an Ising-type model (Sugar, I. P., T. E. Thompson, and R. L. Biltonen. 1999. Biophys. J. 76:2099-2110). The model is able to predict the following properties in agreement with the respective experimental data: the excess heat capacity curves, fluorescence recovery after photobleaching (FRAP) threshold temperatures at different mixing ratios, the most frequent center-to-center distance between DSPC clusters, and the fractal dimension of gel clusters. In agreement with the neutron diffraction and fluorescence microscopy data, the simulations show that below the percolation threshold temperature of gel clusters many nanometer-size gel clusters co-exist with one large gel cluster of size comparable with the membrane surface area. With increasing temperature the calculated effective fractal dimension and capacity dimension of gel and fluid clusters decrease and increase, respectively, within the (0, 2) interval. In the region of the gel-to-fluid transition the following geometrical properties are independent from the temperature and the state of the cluster: 1) the cluster perimeter linearly increases with the number of cluster arms at a rate of 8.2 nm/arm; 2) the average number of inner islands in a cluster increases with increasing cluster size, S, according to a power function of 0.00427 x S(1.3); 3) the following exponential function describes the average size of an inner island versus the size of the host cluster, S: 1 + 1.09(1 - e(-0.0072xS)). By means of the equations describing the average geometry of the clusters the process of the association of clusters is investigated.
机译:在本文中,通过使用伊辛型模型(Sugar,IP,TE Thompson和RL Biltonen。1999. Biophys.J.J.Biol.Chem.Soc。,1999,15:1959-596)计算等摩尔二肉豆蔻酰基磷脂酰胆碱/二硬脂酰磷脂酰胆碱(DMPC / DSPC)脂质双层的凝胶和流体簇的几何性质。 76:2099-2110)。该模型能够与相应的实验数据相一致地预测以下特性:过量的热容量曲线,不同混合比例下光漂白(FRAP)阈值温度后的荧光恢复,DSPC簇之间最频繁的中心距,和凝胶簇的分形维数。与中子衍射和荧光显微镜数据一致,模拟表明,在凝胶团簇的渗透阈温度以下,许多纳米级凝胶团与一个与膜表面积相当的大凝胶团共存。随着温度升高,凝胶和流体团簇的有效分形维数和容量维数分别在(0,2)区间内减小和增大。在凝胶到流体的过渡区域中,以下几何特性与温度和簇的状态无关:1)簇周长随簇臂的数量以8.2 nm /臂的速率线性增加; 2)根据0.00427 x S(1.3)的幂函数,群集中平均内部岛数随群集大小S的增加而增加; 3)以下指数函数描述了内部孤岛的平均大小与主机群集大小S的比:1 + 1.09(1- e(-0.0072xS))。通过描述聚类平均几何形状的方程,研究聚类的关联过程。

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