Gudmand M, Fidorra Matthias, Bjørnholm T, Heimburg T
Membrane Biophysics Group, Niels Bohr Institute, University of Copenhagen, Denmark.
Biophys J. 2009 Jun 3;96(11):4598-609. doi: 10.1016/j.bpj.2009.01.063.
The pressure-dependent diffusion and partitioning of single lipid fluorophores in DMPC and DPPC monolayers were investigated with the use of a custom-made monolayer trough mounted on a combined fluorescence correlation spectroscopy (FCS) and wide-field microscopy setup. It is shown that lipid diffusion, which is essential for the function of biological membranes, is heavily influenced by the lateral pressure and phase of the lipid structure. Both of these may change dynamically during, e.g., protein adsorption and desorption processes. Using FCS, we measured lipid diffusion coefficients over a wide range of lateral pressures in DMPC monolayers and fitted them to a free-area model as well as the direct experimental observable mean molecular area. FCS measurements on DPPC monolayers were also performed below the onset of the phase transition (Pi < 5 mN/m). At higher pressures, FCS was not applicable for measuring diffusion coefficients in DPPC monolayers. Single-molecule fluorescence microscopy and differential scanning calorimetry clearly showed that this was due to heterogeneous partitioning of the lipid fluorophores in condensed phases. The results were compared with dye partitioning in giant lipid vesicles. These findings are significant in relation to the application of lipid fluorophores to study diffusion in both model systems and biological systems.
利用安装在荧光相关光谱(FCS)和宽场显微镜组合装置上的定制单层槽,研究了单个脂质荧光团在二肉豆蔻酰磷脂酰胆碱(DMPC)和二棕榈酰磷脂酰胆碱(DPPC)单层中的压力依赖性扩散和分配。结果表明,对生物膜功能至关重要的脂质扩散,受到脂质结构的侧向压力和相态的严重影响。在例如蛋白质吸附和解吸过程中,这两者都可能动态变化。我们使用FCS测量了DMPC单层在广泛侧向压力范围内的脂质扩散系数,并将其拟合到自由面积模型以及直接实验可观测的平均分子面积。还在相变起始点以下(Pi < 5 mN/m)对DPPC单层进行了FCS测量。在较高压力下,FCS不适用于测量DPPC单层中的扩散系数。单分子荧光显微镜和差示扫描量热法清楚地表明,这是由于脂质荧光团在凝聚相中的不均匀分配所致。将结果与染料在巨型脂质囊泡中的分配进行了比较。这些发现对于脂质荧光团在模型系统和生物系统中研究扩散的应用具有重要意义。