Fidorra Matthias, Heimburg Thomas, Bagatolli Luis A
Membrane Biophysics and Biophotonics group/MEMPHYS, Center for Biomembrane Physics, Department of Biochemistry and Molecular Biology, University of Southern Denmark, 5230 Odense, Denmark.
Biophys J. 2009 Jul 8;97(1):142-54. doi: 10.1016/j.bpj.2009.03.060.
We studied the thermal behavior of membranes composed of mixtures of natural cerebrosides (from porcine brain) and 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC) with and without cholesterol, using differential scanning calorimetry, Fourier transform infrared spectroscopy, and confocal/multiphoton fluorescence microscopy. The POPC/cerebroside mixture display solid ordered/liquid disordered phase coexistence in a broad range of compositions and temperatures in agreement with previous results reported for POPC/(bovine brain)cerebrosides. The observed phase coexistence scenario consists of elongated, micrometer-sized cerebroside-rich solid ordered domains that span the bilayer, embedded in a POPC-rich liquid disordered phase. The data obtained from differential scanning calorimetry and Fourier transform infrared spectroscopy was in line with that obtained in the microscopy experiments for the binary mixture, except at very high cerebroside molar fractions (0.8-0.9) were some differences are observed. Cholesterol incorporation exerts strong changes on the lateral organization of POPC/porcine brain cerebroside membranes. At intermediate cholesterol concentrations (10-25 mol %) the solid ordered/liquid disordered phase coexistence scenario gradually transform to a solid ordered/liquid ordered one. Above 25 mol % of cholesterol two distinct regions with liquid ordered phase character are visualized in the membrane until a single liquid ordered phase forms at 40 mol % cholesterol. The observed cholesterol effect largely differs from that reported for POPC/porcine brain ceramide, reflecting the impact of the sphingolipids polar headgroup on the membrane lateral organization.
我们使用差示扫描量热法、傅里叶变换红外光谱法以及共聚焦/多光子荧光显微镜,研究了由天然脑苷脂(来自猪脑)与1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱(POPC)的混合物构成的膜在有或没有胆固醇情况下的热行为。POPC/脑苷脂混合物在很宽的组成和温度范围内呈现出固相有序/液相无序相共存,这与先前报道的POPC/(牛脑)脑苷脂的结果一致。观察到的相共存情况是由跨越双层的、微米级富含脑苷脂的固相有序域组成,这些域嵌入富含POPC的液相无序相中。差示扫描量热法和傅里叶变换红外光谱法获得的数据与二元混合物显微镜实验得到的数据一致,除了在脑苷脂摩尔分数非常高(0.8 - 0.9)时观察到一些差异。胆固醇的掺入对POPC/猪脑脑苷脂膜的横向组织产生了强烈影响。在中等胆固醇浓度(10 - 25 mol%)时,固相有序/液相无序相共存情况逐渐转变为固相有序/液相有序情况。当胆固醇含量超过25 mol%时,膜中会出现两个具有液相有序相特征的不同区域,直到在胆固醇含量为40 mol%时形成单一的液相有序相。观察到的胆固醇效应与报道的POPC/猪脑神经酰胺的效应有很大不同,这反映了鞘脂极性头基团对膜横向组织的影响。