Ivkova M N, Pechatnikov V A, Gracheva O A, Pechatnikova E V, Ivkov V G
Gen Physiol Biophys. 1987 Feb;6(1):45-55.
The interaction of the probe diS-C3-(5) with dipalmitoylphosphatidylcholine (DPPC) liposomes has been studied using fluorescence and differential scanning calorimetry (DSC). The partition coefficients (K) of the probe for the lipid and the aqueous phase (in terms of molar part units) were (1.20 +/- 0.4) X 10(6) at 45 degrees C and (0.50 +/- 0.07) X 10(6) at 23 and 36 degrees C. In terms of volume concentration units, these values correspond to Kp = (2.88 +/- 0.10) X 10(4) and Kp = (1.20 +/- 0.17) X 10(4), respectively. DSC thermograms were practically identical both for large unilamellar and multilamellar liposomes. The main transition peak remained practically unchanged over the entire range of the probe concentrations used. The pretransition could be observed up to maximal probe concentrations applied and it widened and shifted from 35.4 degrees C in pure DPPC to approximately 32 degrees C at a probe/lipid ratio of 0.027. These results suggest that in both quasicrystalline and liquid crystalline lipid bilayers the probe molecules are included in "defects" between structurally ordered microregions (microdomains or clusters). The dependence of the fluorescence response on the transmembrane potential in a suspension of unilamellar DPPC vesicles suggest that the equilibrium thermodynamic model is valid for liquid crystalline bilayers.
已使用荧光和差示扫描量热法(DSC)研究了探针二磺酸-C3-(5)与二棕榈酰磷脂酰胆碱(DPPC)脂质体的相互作用。该探针在脂质和水相中的分配系数(K,以摩尔分数单位计)在45℃时为(1.20±0.4)×10⁶,在23℃和36℃时为(0.50±0.07)×10⁶。以体积浓度单位计,这些值分别对应于Kp = (2.88±0.10)×10⁴和Kp = (1.20±0.17)×10⁴。对于大单层脂质体和多层脂质体,DSC热谱图实际上是相同的。在所使用的探针浓度的整个范围内,主要转变峰实际上保持不变。在施加的最大探针浓度之前都可以观察到预转变,并且它变宽并从纯DPPC中的35.4℃移至探针/脂质比为0.027时的约32℃。这些结果表明,在准晶态和液晶态脂质双层中,探针分子都包含在结构有序的微区(微结构域或簇)之间的“缺陷”中。单层DPPC囊泡悬浮液中荧光响应对跨膜电位的依赖性表明,平衡热力学模型适用于液晶双层。