Guigas Gernot, Weiss Matthias
Cellular Biophysics Group (BIOMS), German Cancer Research Center, Heidelberg, Germany.
Biophys J. 2008 Aug;95(3):L25-7. doi: 10.1529/biophysj.108.136069. Epub 2008 May 23.
The observation of membrane domains in vivo and in vitro has triggered a renewed interest in the size-dependent diffusion of membrane inclusions (e.g., clusters of transmembrane proteins and lipid rafts). Here, we have used coarse-grained membrane simulations to quantify the influence of a hydrophobic mismatch between the inclusion's transmembrane portion and the surrounding lipid bilayer on the diffusive mobility of the inclusion. Our data indicate only slight changes in the mobility (<30%) when altering the hydrophobic mismatch, and the scaling of the diffusion coefficient D is most consistent with previous hydrodynamic predictions, i.e., with the Saffman-Delbruck relation and the edgewise motion of a thin disk in the limit of small and large radii, respectively.
体内和体外对膜结构域的观察引发了人们对膜内含物(例如跨膜蛋白簇和脂筏)尺寸依赖性扩散的新兴趣。在此,我们使用粗粒度膜模拟来量化内含物跨膜部分与周围脂质双层之间的疏水错配对内含物扩散迁移率的影响。我们的数据表明,改变疏水错配时迁移率仅有轻微变化(<30%),并且扩散系数D的标度与先前的流体动力学预测最为一致,即在小半径和大半径极限下分别与萨夫曼-德尔布吕克关系以及薄盘的侧向运动一致。