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植物鞘氨醇型神经酰胺对二肉豆蔻酰磷脂酰胆碱(DMPC)膜结构的影响。

Influence of phytosphingosine-type ceramides on the structure of DMPC membrane.

作者信息

Zbytovská J, Kiselev M A, Funari S S, Garamus V M, Wartewig S, Neubert R

机构信息

Department of Pharmacy, Martin-Luther-University Halle-Wittenberg, Wolfgang-Langenbeck Str. 4, D-06120 Halle/Saale, Germany.

出版信息

Chem Phys Lipids. 2005 Dec;138(1-2):69-80. doi: 10.1016/j.chemphyslip.2005.08.004. Epub 2005 Sep 15.

Abstract

The present paper describes the influence of the ceramides with phytosphingosine base, N-stearoylphytosphingosine (Cer[NP]) and alpha-hydroxy-N-stearoylphytosphingosine (Cer[AP]), on the structure and properties of multilamellar (MLVs) and unilamellar vesicles (ULVs) of dimyristoylphosphatidylcholine (DMPC). The lamellar repeat distance, D, has been measured at various temperatures using small angle X-ray diffraction. The incorporation of ceramides into the DMPC membrane causes larger D compared to pure DMPC membrane. For both ceramide types, at 32 degrees C, there is a linear relationship between the D value and the ceramide concentration. However, there is no such dependence at 13 or 60 degrees C. Unlike Cer[AP], Cer[NP] induces a new phase with a repeat distance of 38.5A. The membrane thickness and the vesicle radius of ULVs in water and in sucrose solution were calculated from small angle neutron scattering curves. Phytosphingosine ceramides increase both the membrane thickness and the radius in comparison to pure DMPC ULVs. The stability of ULVs in time was studied by dynamic light scattering. Both ceramides induce an aggregation of the ULVs into micrometer sized non-multilamellar structures in pure water. Presence of sucrose in the environment averts the vesicle aggregation.

摘要

本文描述了含植物鞘氨醇碱基的神经酰胺,即N-硬脂酰植物鞘氨醇(Cer[NP])和α-羟基-N-硬脂酰植物鞘氨醇(Cer[AP]),对二肉豆蔻酰磷脂酰胆碱(DMPC)多层囊泡(MLVs)和单层囊泡(ULVs)的结构和性质的影响。使用小角X射线衍射在不同温度下测量了层间距D。与纯DMPC膜相比,将神经酰胺掺入DMPC膜中会导致D值更大。对于这两种类型的神经酰胺,在32℃时,D值与神经酰胺浓度之间存在线性关系。然而,在13℃或60℃时不存在这种依赖性。与Cer[AP]不同,Cer[NP]诱导出一种重复距离为38.5Å的新相。根据小角中子散射曲线计算了水中和蔗糖溶液中ULVs的膜厚度和囊泡半径。与纯DMPC ULVs相比,植物鞘氨醇神经酰胺增加了膜厚度和半径。通过动态光散射研究了ULVs在时间上的稳定性。两种神经酰胺都能诱导纯水中的ULVs聚集形成微米级的非多层结构。环境中存在蔗糖可避免囊泡聚集。

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