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二油酰磷脂酰胆碱双层膜头部区域的水合作用、结构及分子相互作用:一项电子自旋共振研究

Hydration, structure, and molecular interactions in the headgroup region of dioleoylphosphatidylcholine bilayers: an electron spin resonance study.

作者信息

Ge Mingtao, Freed Jack H

机构信息

Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York 14853, USA.

出版信息

Biophys J. 2003 Dec;85(6):4023-40. doi: 10.1016/S0006-3495(03)74816-4.

Abstract

The relationship between bilayer hydration and the dynamic structure of headgroups and interbilayer water in multilamellar vesicles is investigated by electron spin resonance methods. Temperature variations of the order parameter of a headgroup spin label DPP-Tempo in DOPC in excess water and partially dehydrated (10 wt % water) show a cusp-like pattern around the main phase transition, Tc. This pattern is similar to those of temperature variations of the quadrupolar splitting of interbilayer D2O in PC and PE bilayers previously measured by 2H NMR, indicating that the ordering of the headgroup and the interbilayer water are correlated. The cusp-like pattern of these and other physical properties around Tc are suggestive of quasicritical fluctuations. Also, an increase (a decrease) in ordering of DPP-Tempo is correlated with water moving out of (into) interbilayer region into (from) the bulk water phase near the freezing point, Tf. Addition of cholesterol lowers Tf, which remains the point of increasing headgroup ordering. Using the small water-soluble spin probe 4-PT, it is shown that the ordering of interbilayer water increases with bilayer dehydration. It is suggested that increased ordering in the interbilayer region, implying a lowering of entropy, will itself lead to further dehydration of the interbilayer region until its lowered pressure resists further flow, i.e., an osmotic phenomenon.

摘要

采用电子自旋共振方法研究了多层囊泡中双层水合作用与头基动态结构及层间水之间的关系。过量水和部分脱水(10 wt%水)条件下,DOPC中头基自旋标记物DPP-Tempo的序参数随温度变化,在主相变温度Tc附近呈现出尖峰状模式。该模式与之前通过2H NMR测量的PC和PE双层中层间D2O四极分裂的温度变化模式相似,表明头基和层间水的有序性是相关的。这些以及其他物理性质在Tc附近的尖峰状模式暗示了准临界涨落。此外,在冰点温度Tf附近,DPP-Tempo有序性的增加(减少)与水从层间区域移出(移入)到本体水相相关。添加胆固醇会降低Tf,Tf仍是头基有序性增加的点。使用小的水溶性自旋探针4-PT表明,层间水的有序性随双层脱水而增加。有人提出,层间区域有序性的增加意味着熵的降低,这本身将导致层间区域进一步脱水,直到其降低的压力阻止进一步流动,即一种渗透现象。

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