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磷脂双层的界面结构:1,2-二棕榈酰-sn-甘油-3-磷酸胆碱及其二烷基和酰基-烷基类似物的差示扫描量热法和傅里叶变换红外光谱研究

The interfacial structure of phospholipid bilayers: differential scanning calorimetry and Fourier transform infrared spectroscopic studies of 1,2-dipalmitoyl-sn-glycero-3-phosphorylcholine and its dialkyl and acyl-alkyl analogs.

作者信息

Lewis R N, Pohle W, McElhaney R N

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

Biophys J. 1996 Jun;70(6):2736-46. doi: 10.1016/S0006-3495(96)79843-0.

Abstract

The thermotropic phase behavior of aqueous dispersions of dipalmitoylphosphatidylcholine (DPPC) and its 1,2-dialkyl, 1-acyl 2-alkyl and 1-alkyl 2-acyl analogs was examined by differential scanning calorimetry, and the organization of these molecules in those hydrated bilayers was studied by Fourier transform infrared spectroscopy. The calorimetric data indicate that substitution of either or both of the acyl chains of DPPC with the corresponding ether-linked hydrocarbon chain results in relatively small increases in the temperature (< 4 degrees C) and enthalpy (< 1 kcal/mol) of the lipid chain-melting phase transition. The spectroscopic data reveal that replacement of one or both of the ester-linked hydrocarbon chains of DPPC with its ether-linked analog causes structural changes in the bilayer assembly, which result in an increase in the polarity of the local environments of the phosphate headgroups and of the ester carbonyl groups at the bilayer polar/apolar interface. The latter observation is unexpected, given that ester linkages are considered to be intrinsically more polar that ether linkages. This finding cannot be satisfactorily rationalized unless the conformation of the glycerol backbones of the analogs containing ether-linked hydrocarbon chains differs significantly from that of diacyl glycerolipids such as DPPC. A comparison of the alpha-methylene scissoring bands and the methylene wagging band progressions of these lipids with the corresponding absorption bands of specifically chain-perdeuterated analogs of DPPC also supports the conclusion that replacement of the ester-linked hydrocarbon chains of DPPC with the corresponding ether-linked analog induces conformational changes in the lipid glycerol backbone. The suggestion that the conformation of glycerol backbones in the alkyl-acyl and dialkyl derivatives of DPPC differs from that of the naturally occurring 1,2-diacyl glycerolipid suggests that mono- and di-alkyl glycerolipids may not be good models of their diacyl analogs. These results, and previously published evidence that DPPC analogs with ether-linked hydrocarbon chains spontaneously form chain-interdigitated gel phases at low temperatures, clearly indicate that the properties of lipid bilayers can be substantially altered by small changes in the chemical structures of their polar/polar interfaces, and highlight the critical role of the interfacial region as a determinant of the structure and organization of lipid assemblies.

摘要

通过差示扫描量热法研究了二棕榈酰磷脂酰胆碱(DPPC)及其1,2 - 二烷基、1 - 酰基2 - 烷基和1 - 烷基2 - 酰基类似物的水分散体的热致相行为,并通过傅里叶变换红外光谱研究了这些分子在水合双层中的组织情况。量热数据表明,用相应的醚键连接的烃链取代DPPC的一个或两个酰基链,会导致脂质链熔化相变的温度(<4℃)和焓(<1千卡/摩尔)相对较小的升高。光谱数据显示,用其醚键连接的类似物取代DPPC的一个或两个酯键连接的烃链会导致双层组装结构发生变化,这导致双层极性/非极性界面处磷酸头部基团和酯羰基局部环境的极性增加。鉴于酯键被认为本质上比醚键更具极性,后一观察结果出乎意料。除非含有醚键连接烃链的类似物的甘油主链构象与二酰基甘油脂质(如DPPC)的构象有显著差异,否则这一发现无法得到令人满意的合理解释。将这些脂质的α - 亚甲基剪式振动带和亚甲基摇摆带进展与DPPC的特定链全氘代类似物的相应吸收带进行比较,也支持了用相应的醚键连接类似物取代DPPC酯键连接的烃链会诱导脂质甘油主链构象变化的结论。DPPC的烷基 - 酰基和二烷基衍生物中甘油主链构象与天然存在的1,2 - 二酰基甘油脂质不同的这一观点表明,单烷基和二烷基甘油脂质可能不是其二酰基类似物的良好模型。这些结果以及先前发表的证据表明,具有醚键连接烃链的DPPC类似物在低温下会自发形成链交错凝胶相,清楚地表明脂质双层的性质可因其极性/极性界面化学结构的微小变化而发生显著改变,并突出了界面区域作为脂质组装结构和组织决定因素的关键作用。

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