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N-甲基化二油酰磷脂酰乙醇胺中的片层/反立方(Lα/QII)相变

Lamellar/inverted cubic (L alpha/QII) phase transition in N-methylated dioleoylphosphatidylethanolamine.

作者信息

Siegel D P, Banschbach J L

机构信息

Miami Valley Laboratories, Procter & Gamble Company, Cincinnati, Ohio 45239-8707.

出版信息

Biochemistry. 1990 Jun 26;29(25):5975-81. doi: 10.1021/bi00477a014.

DOI:10.1021/bi00477a014
PMID:2383567
Abstract

Inverted cubic (QII) phases form in hydrated N-methylated dioleoylphosphatidylethanolamine (DOPE-Me). Previous work indicated that QII phases in this and other systems might be metastable structures. Whether or not QII phases are stable has important implications for models of the factors determining the relative stability of bilayer and nonbilayer phases and of the mechanisms of transitions between those phases. Here, using X-ray diffraction and very slow scan rate differential scanning calorimetry (DSC), we show that thermodynamically stable QII phases form slowly during incubation of multilamellar samples of DOPE-Me at constant temperature. The equilibrium L alpha/QII phase transition temperature is 62.2 +/- 1 degree C. The transition enthalpy is 174 +/- 34 cal/mol, about two-thirds of the L alpha/HII transition enthalpy observed at faster scan rates. This implies that the curvature free energy of lipids in QII phases is substantially lower than in L alpha phases and that this reduction is substantial compared to the reduction achieved in the HII phase. The L alpha/QII transition is slow and is not reliably detected with DSC until the temperature scan rate is reduced to ca. 1 degrees C/h. At faster scan rates, the HII phase forms at a reproducible temperature of 66 degrees C. This HII phase is metastable until ca. 72-79 degrees C, where the equilibrium QII/HII transition seems to occur. These results, as well as the induction of QII phases in similar systems by temperature cycling (observed by others), are consistent with a theory of L alpha/QII/HII transition mechanisms proposed earlier (Siegel, 1986c).

摘要

水合的N-甲基化二油酰磷脂酰乙醇胺(DOPE-Me)中会形成反立方(QII)相。先前的研究表明,该体系及其他体系中的QII相可能是亚稳结构。QII相是否稳定对于决定双层相和非双层相相对稳定性的因素模型以及这些相之间转变机制具有重要意义。在此,我们利用X射线衍射和极慢扫描速率差示扫描量热法(DSC)表明,在恒温孵育DOPE-Me的多片层样品过程中,热力学稳定的QII相形成缓慢。平衡Lα/QII相转变温度为62.2±1℃。转变焓为174±34 cal/mol,约为在较快扫描速率下观察到的Lα/HII转变焓的三分之二。这意味着QII相中脂质的曲率自由能显著低于Lα相中的,并且与HII相中实现的降低相比,这种降低幅度很大。Lα/QII转变缓慢,直到温度扫描速率降至约1℃/h时,DSC才能够可靠地检测到。在较快扫描速率下,HII相在66℃的可重复温度下形成。该HII相在约72 - 79℃之前是亚稳的,在此似乎发生平衡的QII/HII转变。这些结果,以及通过温度循环在类似体系中诱导出QII相(其他人观察到的),与先前提出的Lα/QII/HII转变机制理论(Siegel,1986c)一致。

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