THERMODYNAMIC ELUCIDATION OF SOLUTE-INDUCED LIPID INTERDIGITATION PHASE - LIPID INTERACTIONS WITH HYDROPHOBIC VERSUS AMPHIPATHIC SPECIES

被引:13
作者
ROTH, LG
CHEN, CH
机构
[1] NEW YORK STATE DEPT HLTH,WADSWORTH CTR LABS & RES,ALBANY,NY 12201
[2] SUNY ALBANY,DEPT BIOMED SCI,ALBANY,NY 12201
关键词
D O I
10.1016/0003-9861(92)90564-D
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Comparative thermodynamic studies on the interactions of aqueous dispersions of dipalmitoyl phosphatidylcholine (DPPC) bilayer vesicles with hydrophobic and amphipathic species were conducted to elucidate the nature of the solute-induced interdigitated lipid phase. Cyclohexanol, a strong hydrophobic species, lowers the temperature (tm) of the lipid main phase transition from the gel to the liquid-crystalline phase. Unlike ethanol (an amphipathic species), as reported previously, cyclohexanol does not exert a biphasic effect on tm (lowering tm at lower concentrations and raising tm at higher concentrations). At cyclohexanol ≥ 15.4 mg/ml or 0.154 m, the thermogram of DPPC vesicles exhibits a small transition adjacent to the main phase transition but at a lower temperature. In contrast, ethanol does not promote such a small transition. Furthermore, the enthalpy (ΔH) of the transition is increased in the presence of cyclohexanol. The sign of the enthalpy change (ΔH - ΔHo) is positive and that of the free energy change (ΔG - ΔGo) is negative, a characteristic of solute-solute hydrophobic interaction. In contrast, DPPC bilayer vesicles exhibit both (ΔH - ΔHo) and (ΔG - ΔGo) > 0 in the presence of ethanol in a concentration range where lipid vesicles exist in an interdigitated phase. To support the above distinct thermodynamic observations, fluorescence steadystate polarization (P) measurements were also performed. At the temperature below tm, the value of P decreases as cyclohexanol concentration increases, while a biphasic effect on P was found in the presence of ethanol. These findings support the postulation that the solute-induced interdigitated lipid phase requires the solute molecule to be amphipathic in nature. © 1992.
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页码:207 / 213
页数:7
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