Verma S P, Wallach D F
Biochim Biophys Acta. 1976 Apr 5;426(4):616-23. doi: 10.1016/0005-2736(76)90125-5.
We have examined the Raman scattering due to CH stretching vibrations, as well as to v(-C=C-) and v(=C-C=) of beta-carotene, of liposomes composed of phosphatidylcholine (egg, dimyristoyl, dipalmitoyl) +/- cholesterol, beta-carotene or melittin in the temperature range of -10 degrees C to 45 degrees C. (2) Plots vs. temperature of the intensities of the 2885 cm-1 and 2930 cm-1 CH stretching bands relative to the intensity of the thermally stable 2850 cm-1 band, i.e. the I2885/I2850 and I2930/I2850 ratios, reveal a sharp discontinuity in cholesterol-free phosphatidylcholine liposomes; this coincides with the gel leads to liquid-crystal transition temperature of the fatty acyl chains. In cholesterol/phosphatudylcholine liposomes the change in I2885/I2850 occurs over a very broad temperature range and I2930/I2850 remains stable. (3) I1527/I1158, i.e. the intensity of v(-C=C-) relative to that of v(=C-C-) in beta-carotene/phosphatidylcholine liposomes, changes discontinuously at the gel leads to liquid-crystal transition temperature. The values above the transition temperature approach those of the carotenoid in organic solution. (4) The transitions reported in I2885/I2850 for phosphatidylcholine/melittin liposomes (25-56; 1, M/M) are shifted to much higher temperatures than observed in phosphatidylcholine liposomes. In the case of dimyristoyl phosphatidylcholine/melittin the changes in I2930/I2850 also occurs at a higher temperature (28 degrees C) than without melittin (21 degrees C), but the temperature shift is less than the +13 degrees C observed for I2885/I2850. It appears that the apolar moiety of melittin organizes phospholipids adjacent to and more remote from the peptide moiety, to form complexes with an elevated lipid transition temperature. The effect of the peptide moiety is greater on the methylene segments (I2885/I2850) than on the methyl termini (I2930/I2850).
我们研究了由磷脂酰胆碱(鸡蛋、二肉豆蔻酰、二棕榈酰)+/-胆固醇、β-胡萝卜素或蜂毒素组成的脂质体在-10℃至45℃温度范围内,由于CH伸缩振动以及β-胡萝卜素的v(-C=C-)和v(=C-C=)引起的拉曼散射。(2)相对于热稳定的2850cm-1谱带的强度,2885cm-1和2930cm-1 CH伸缩谱带强度随温度的变化曲线,即I2885/I2850和I2930/I2850比值,在无胆固醇的磷脂酰胆碱脂质体中显示出明显的不连续性;这与脂肪酰链的凝胶态到液晶态转变温度相吻合。在胆固醇/磷脂酰胆碱脂质体中,I2885/I2850的变化发生在非常宽的温度范围内,而I2930/I2850保持稳定。(3)在β-胡萝卜素/磷脂酰胆碱脂质体中,I1527/I1158,即v(-C=C-)相对于v(=C-C-)的强度,在凝胶态到液晶态转变温度处发生不连续变化。转变温度以上的值接近类胡萝卜素在有机溶液中的值。(4)磷脂酰胆碱/蜂毒素脂质体(25-56;1,M/M)中I2885/I2850的转变温度比在磷脂酰胆碱脂质体中观察到的转变温度高得多。在二肉豆蔻酰磷脂酰胆碱/蜂毒素的情况下,I2930/I2850的变化也发生在比无蜂毒素时更高的温度(28℃),但温度偏移小于I2885/I2850观察到的+13℃。似乎蜂毒素的非极性部分使与肽部分相邻和更远的磷脂有序排列,形成脂质转变温度升高的复合物。肽部分对亚甲基片段(I2885/I2850)的影响比对甲基末端(I2930/I2850)的影响更大。