Souza Sofia L, Capitán Maria José, Alvarez Jesus, Funari Sérgio S, Lameiro Maria Helena, Melo Eurico
Instituto de Tecnologia Química e Biológica-UNL, Oeiras, Portugal.
J Phys Chem B. 2009 Feb 5;113(5):1367-75. doi: 10.1021/jp803331k.
Ceramides are particularly abundant in the stratum corneum lipid matrix, where they determine its unusual mesostructure, are involved in the lateral segregation of lipid domains in biological cell membranes, and are also known to act as signaling agents in cells. The importance attributed to ceramides in several biological processes has heightened in recent years, demanding a better understanding of their interaction with other membrane components, namely, cholesterol. Structural data concerning pure ceramides in water are relatively scarce, and this is even more the case for mixtures of ceramides with other lipids commonly associated with them in biological systems. We have derived the thermotropic binary phase diagram of mixtures of N-palmitoyl- D-erythro-sphingosine, C16:0-ceramide, and cholesterol in excess water, using differential scanning calorimetry and small- and wide-angle X-ray diffraction. These mixtures are self-organized in lamellar mesostructures that, between other particularities, show two ceramide to cholesterol crystalline phases with molar proportions that approach 2:3 and 1:3. The 2:3 phase crystallizes in a tetragonal arrangement with a lamellar repeat distance of 3.50 nm, which indicates an unusual lipid stacking, probably unilamellar. The uncommon mesostructures formed by ceramides with cholesterol should be considered in the rationalization of their singular structural role in biological systems.
神经酰胺在角质层脂质基质中含量尤为丰富,在该基质中,神经酰胺决定了其独特的介观结构,参与生物细胞膜中脂质域的横向分离,并且还已知在细胞中充当信号传导剂。近年来,神经酰胺在多个生物过程中的重要性日益凸显,这就需要更好地了解它们与其他膜成分(即胆固醇)的相互作用。关于水中纯神经酰胺的结构数据相对较少,对于神经酰胺与生物系统中通常与之相关的其他脂质的混合物而言,情况更是如此。我们使用差示扫描量热法以及小角和广角X射线衍射,得出了N-棕榈酰-D-赤藓糖神经鞘氨醇(C16:0-神经酰胺)与胆固醇在过量水中的混合物的热致二元相图。这些混合物自组装成层状介观结构,在其他特性中,该结构呈现出两种神经酰胺与胆固醇的结晶相,其摩尔比例接近2:3和1:3。2:3相以四方排列结晶,层间距为3.50 nm,这表明存在不寻常的脂质堆积,可能是单层的。在解释神经酰胺与胆固醇在生物系统中的独特结构作用时,应考虑它们形成的不寻常介观结构。