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水合N-硬脂酰鞘磷脂双层膜的结构与热致性质

Structure and thermotropic properties of hydrated N-stearoyl sphingomyelin bilayer membranes.

作者信息

Maulik P R, Sripada P K, Shipley G G

机构信息

Department of Biophysics, Housman Medical Research Center, Boston University School of Medicine, MA 02118-2394.

出版信息

Biochim Biophys Acta. 1991 Feb 25;1062(2):211-9. doi: 10.1016/0005-2736(91)90395-o.

Abstract

Hydrated multibilayers of N-stearoyl sphingomyelin were investigated as a function of hydration using differential scanning calorimetry (DSC) and X-ray diffraction. Anhydrous N-stearoyl sphingomyelin exhibits an endothermic transition at 75 degrees C (delta H = 3.8 kcal/mol); increasing hydration progressively lowers the transition temperature and increases the transition enthalpy, until limiting values (Tm = 45 degrees C, delta H = 6.7 kcal/mol) are observed for hydration values greater than 21.4% H2O. At low hydration levels, less than 20% H2O, an additional transition is observed at approx. 20 degrees C. X-ray diffraction studies at temperatures below (22 degrees C) and above (55 degrees C) the main endothermic transition confirm that the bilayer gel (sharp 4.2 A reflection)----bilayer liquid crystal (diffuse 4.5 A reflection) transition occurs at all hydration levels with limiting bilayer hydration occurring at approx. 31.5% H2O in the gel phase and at approx. 35% H2O in the liquid crystal phase. The thermotropic properties and metastability of this partial synthetic N-stearoyl sphingomyelin differ in some respects from that of the previously studied synthetic DL-erythro-N-stearoyl sphingomyelin (Estep, T.N., Calhoun, W.I., Barenholz, Y., Biltonen, R.L., Shipley, G.G. and Thompson, T.E. (1980) Biochemistry 19, 20-24), suggesting an influential role of the interfacial molecular conformation.

摘要

利用差示扫描量热法(DSC)和X射线衍射,研究了N-硬脂酰鞘磷脂水合多层膜随水合作用的变化情况。无水N-硬脂酰鞘磷脂在75℃时呈现吸热转变(ΔH = 3.8千卡/摩尔);随着水合作用的增加,转变温度逐渐降低,转变焓增加,直到水合值大于21.4% H₂O时观察到极限值(Tm = 45℃,ΔH = 6.7千卡/摩尔)。在低水合水平下,即水含量低于20%时,在约20℃处观察到另一个转变。在低于主要吸热转变温度(22℃)和高于该温度(55℃)下进行的X射线衍射研究证实,双层凝胶(尖锐的4.2 Å反射)到双层液晶(弥散的4.5 Å反射)的转变在所有水合水平下都会发生,凝胶相中的极限双层水合在约31.5% H₂O时出现,液晶相中的极限双层水合在约35% H₂O时出现。这种部分合成的N-硬脂酰鞘磷脂的热致性质和亚稳定性在某些方面与先前研究的合成DL-赤藓糖-N-硬脂酰鞘磷脂不同(埃斯特普,T.N.,卡尔霍恩,W.I.,巴伦霍尔兹,Y.,比尔顿嫩,R.L.,希普利,G.G.和汤普森,T.E.(1980年)《生物化学》19,20 - 24),这表明界面分子构象具有重要作用。

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