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N-琥珀酰二油酰磷脂酰乙醇胺:纯模型膜和混合模型膜中的结构偏好

N-succinyldioleoylphosphatidylethanolamine: structural preferences in pure and mixed model membranes.

作者信息

Nayar R, Tilcock C P, Hope M J, Cullis P R, Schroit A J

机构信息

Department of Cell Biology, University of Texas M.D. Anderson Hospital and Tumor Institute at Houston 77030.

出版信息

Biochim Biophys Acta. 1988 Jan 13;937(1):31-41. doi: 10.1016/0005-2736(88)90224-6.

Abstract

The structural preferences of the pH-sensitive phospholipid, N-succinyldioleoylphosphatidylethanolamine (N-succinyl-DOPE), have been examined alone and in mixtures with DOPE by 31P-NMR, fluorescence energy transfer, and freeze-fracture techniques. The basic polymorphic behavior of pure N-succinyl-DOPE and DOPE/N-succinyl-DOPE lipid systems and the influence of calcium and pH were investigated. It is shown that, similar to other negatively charged acidic phospholipids, N-succinyl-DOPE adopts the bilayer organization upon hydration. This structure is maintained at both pH 7.4 and 4.0 in the presence or absence of calcium. In the mixed lipid system, N-succinyl-DOPE can stabilize the non-bilayer lipid, DOPE, into a bilayer structure at both pH 7.4 and 4.0 at more than 10 mol% N-succinyl-DOPE, although a narrow 31P-NMR lineshape is observed at acidic pH values. This corresponds to the presence of smaller vesicles as shown by quasi-elastic light scattering measurements. Addition of equimolar calcium (with respect to N-succinyl-DOPE) to the DOPE/N-succinyl-DOPE systems induces the hexagonal HII phase at both pH values. In unilamellar systems with similar lipid composition the addition of Ca2+ results in membrane fusion as indicated by fluorescence energy-transfer experiments. These findings are discussed with regard to the molecular mechanism of the bilayer to hexagonal HII phase transition and membrane fusion and the utility of N-succinyl-DOPE containing pH-sensitive vesicles as drug-delivery vehicles.

摘要

通过31P核磁共振、荧光能量转移和冷冻断裂技术,对pH敏感磷脂N-琥珀酰二油酰磷脂酰乙醇胺(N-琥珀酰-DOPE)单独以及与DOPE混合时的结构偏好进行了研究。研究了纯N-琥珀酰-DOPE和DOPE/N-琥珀酰-DOPE脂质体系的基本多晶型行为以及钙和pH的影响。结果表明,与其他带负电荷的酸性磷脂类似,N-琥珀酰-DOPE在水合后采用双层结构。无论有无钙存在,该结构在pH 7.4和4.0时均能保持。在混合脂质体系中,当N-琥珀酰-DOPE含量超过10 mol%时,N-琥珀酰-DOPE在pH 7.4和4.0时都能将非双层脂质DOPE稳定成双层结构,不过在酸性pH值下观察到31P核磁共振线宽较窄。这与准弹性光散射测量显示的较小囊泡的存在相对应。向DOPE/N-琥珀酰-DOPE体系中加入等摩尔钙(相对于N-琥珀酰-DOPE)会在两个pH值下诱导出六方HII相。在具有相似脂质组成的单层体系中,荧光能量转移实验表明,Ca2+的加入会导致膜融合。就双层向六方HII相转变和膜融合的分子机制以及含N-琥珀酰-DOPE的pH敏感囊泡作为药物递送载体的实用性对这些发现进行了讨论。

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