Lewis R N, Mannock D A, McElhaney R N, Turner D C, Gruner S M
Department of Biochemistry, University of Alberta, Edmonton, Canada.
Biochemistry. 1989 Jan 24;28(2):541-8. doi: 10.1021/bi00428a020.
The lamellar gel/liquid-crystalline and the lamellar liquid-crystalline/reversed hexagonal phase transitions of aqueous dispersions of a number of synthetic phosphatidylethanolamines containing linear saturated, branched chain, and alicyclic fatty acyl chains of varying length were studied by differential scanning calorimetry, 31P nuclear magnetic resonance spectroscopy, and X-ray diffraction. For any given homologous series of phosphatidylethanolamines containing a single chemical class of fatty acids, the lamellar gel/liquid-crystalline phase transition temperature increases and the lamellar liquid-crystalline/reversed hexagonal phase transition temperature decreases with increases in hydrocarbon chain length. For a series of phosphatidylethanolamines of the same hydrocarbon chain length but with different chemical structures, both the lamellar gel/liquid-crystalline and the lamellar liquid-crystalline/reversed hexagonal phase transition temperatures vary markedly and in the same direction. In particular, at comparable effective hydrocarbon chain lengths, both the lamellar gel/liquid-crystalline and the lamellar liquid-crystalline/reversed hexagonal phase transition temperatures vary in parallel, such that the temperature difference between these two phase transitions is nearly constant. Moreover, at comparable effective acyl chain lengths, the d spacings of the lamellar liquid-crystalline phases and of the inverted hexagonal phases are all similar, implying that the thickness of the phosphatidylethanolamine bilayers at the onset of the lamellar liquid-crystalline/reversed hexagonal phase transition and the diameter of the water-filled cylinders formed at the completion of this phase transition are comparable and independent of the chemical structure of the acyl chain.(ABSTRACT TRUNCATED AT 250 WORDS)
通过差示扫描量热法、³¹P核磁共振光谱法和X射线衍射法,研究了一系列含有不同长度的线性饱和、支链和脂环族脂肪酰链的合成磷脂酰乙醇胺水分散体的片层凝胶/液晶和片层液晶/反相六方相转变。对于任何给定的含有单一脂肪酸化学类别的磷脂酰乙醇胺同系物系列,随着烃链长度的增加,片层凝胶/液晶相转变温度升高,而片层液晶/反相六方相转变温度降低。对于一系列具有相同烃链长度但化学结构不同的磷脂酰乙醇胺,片层凝胶/液晶和片层液晶/反相六方相转变温度均有显著变化且方向相同。特别是,在相当的有效烃链长度下,片层凝胶/液晶和片层液晶/反相六方相转变温度平行变化,使得这两个相转变之间的温度差几乎恒定。此外,在相当的有效酰基链长度下,片层液晶相和反相六方相的d间距都相似,这意味着在片层液晶/反相六方相转变开始时磷脂酰乙醇胺双层的厚度以及在该相转变完成时形成的水填充圆柱体的直径是相当的,并且与酰基链的化学结构无关。(摘要截取自250字)