首页> 美国卫生研究院文献>Biophysical Journal >Different Effects of Long- and Short-Chain Ceramides on the Gel-Fluid and Lamellar-Hexagonal Transitions of Phospholipids: A Calorimetric NMR and X-Ray Diffraction Study
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Different Effects of Long- and Short-Chain Ceramides on the Gel-Fluid and Lamellar-Hexagonal Transitions of Phospholipids: A Calorimetric NMR and X-Ray Diffraction Study

机译:长链和短链神经酰胺对磷脂的凝胶-流体和层状-六角形转变的不同影响:量热法NMR和X射线衍射研究

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摘要

The effects on dielaidoylphosphatidylethanolamine (DEPE) bilayers of ceramides containing different N-acyl chains have been studied by differential scanning calorimetry small angle x-ray diffraction and 31P-NMR spectroscopy. N-palmitoyl (Cer16), N-hexanoyl (Cer6), and N-acetyl (Cer2) sphingosines have been used. Both the gel-fluid and the lamellar-inverted hexagonal transitions of DEPE have been examined in the presence of the various ceramides in the 0-25 mol % concentration range. Pure hydrated ceramides exhibit cooperative endothermic order-disorder transitions at 93°C (Cer16), 60°C (Cer6), and 54°C (Cer2). In DEPE bilayers, Cer16 does not mix with the phospholipid in the gel phase, giving rise to high-melting ceramide-rich domains. Cer16 favors the lamellar-hexagonal transition of DEPE, decreasing the transition temperature. Cer2, on the other hand, is soluble in the gel phase of DEPE, decreasing the gel-fluid and increasing the lamellar-hexagonal transition temperatures, thus effectively stabilizing the lamellar fluid phase. In addition, Cer2 was peculiar in that no equilibrium could be reached for the Cer2-DEPE mixture above 60°C, the lamellar-hexagonal transition shifting with time to temperatures beyond the instrumental range. The properties of Cer6 are intermediate between those of the other two, this ceramide decreasing both the gel-fluid and lamellar-hexagonal transition temperatures. Temperature-composition diagrams have been constructed for the mixtures of DEPE with each of the three ceramides. The different behavior of the long- and short-chain ceramides can be rationalized in terms of their different molecular geometries, Cer16 favoring negative curvature in the monolayers, thus inverted phases, and the opposite being true of the micelle-forming Cer2. These differences may be at the origin of the different physiological effects that are sometimes observed for the long- and short-chain ceramides.
机译:通过差示扫描量热法小角度X射线衍射和 31 P-NMR光谱研究了含有不同N-酰基链的神经酰胺对二烯丙基磷脂酰乙醇胺(DEPE)双层的影响。使用了N-棕榈酰基(Cer16),N-己酰基(Cer6)和N-乙酰基(Cer2)鞘氨醇。在浓度为0-25 mol%的各种神经酰胺存在下,已经检查了DEPE的凝胶流体和层状反转的六边形转变。纯水合神经酰胺在93°C(Cer16),60°C(Cer6)和54°C(Cer2)时表现出协同的吸热有序-无序过渡。在DEPE双层中,Cer16在凝胶相中不会与磷脂混合,从而导致高熔点的富含神经酰胺的结构域。 Cer16支持DEPE的层状六边形转变,从而降低了转变温度。另一方面,Cer2可溶于DEPE的凝胶相,从而降低了凝胶流体并提高了层状六方转变温度,从而有效地稳定了层状液相。此外,Cer2的独特之处在于,对于60°C以上的Cer2-DEPE混合物,无法达到平衡,层状六方转变随时间变化到超出仪器范围的温度。 Cer6的特性介于其他两个特性之间,该神经酰胺可同时降低凝胶流体和层状六边形的转变温度。已为DEPE与三种神经酰胺中的每一种的混合物绘制了温度组成图。长链和短链神经酰胺的不同行为可以根据它们的不同分子几何结构来合理化,Cer16有利于单分子层中的负曲率,从而形成反相,而形成胶束的Cer2则相反。这些差异可能是有时会针对长链和短链神经酰胺观察到的不同生理效应的起源。

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