Hac Agnieszka E, Seeger Heiko M, Fidorra Matthias, Heimburg Thomas
The Membrane Biophysics and Thermodynamics Group, Max-Planck-Institute for Biophysical Chemistry, Göttingen, Germany.
Biophys J. 2005 Jan;88(1):317-33. doi: 10.1529/biophysj.104.040444. Epub 2004 Oct 22.
Using fluorescence correlation spectroscopy, calorimetry, and Monte Carlo simulations, we studied diffusion processes in two-component membranes close to the chain melting transition. The aim is to describe complex diffusion behavior in lipid systems in which gel and fluid domains coexist. Diffusion processes in gel membranes are significantly slower than in fluid membranes. Diffusion processes in mixed phase regions are therefore expected to be complex. Due to statistical fluctuations the gel-fluid domain patterns are not uniform in space and time. No models for such diffusion processes are available. In this article, which is both experimental and theoretical, we investigated the diffusion in DMPC-DSPC lipid mixtures as a function of temperature and composition. We then modeled the fluorescence correlation spectroscopy experiment using Monte Carlo simulations to analyze the diffusion process. It is shown that the simulations yield a very good description of the experimental diffusion processes, and that predicted autocorrelation profiles are superimposable with the experimental curves. We believe that this study adds to the discussion on the physical nature of rafts found in biomembranes.
我们使用荧光相关光谱法、量热法和蒙特卡罗模拟,研究了接近链熔化转变的双组分膜中的扩散过程。目的是描述凝胶和流体域共存的脂质系统中的复杂扩散行为。凝胶膜中的扩散过程明显比流体膜中的慢。因此,预计混合相区域中的扩散过程会很复杂。由于统计涨落,凝胶-流体域模式在空间和时间上并不均匀。目前尚无针对此类扩散过程的模型。在这篇兼具实验和理论性的文章中,我们研究了DMPC-DSPC脂质混合物中扩散随温度和组成的变化。然后,我们使用蒙特卡罗模拟对荧光相关光谱实验进行建模,以分析扩散过程。结果表明,模拟对实验扩散过程给出了很好的描述,并且预测的自相关曲线与实验曲线可以叠加。我们认为这项研究为生物膜中筏的物理性质的讨论增添了内容。