Sekiya T, Nozawa Y
Cell Struct Funct. 1984 Dec;9(4):381-9. doi: 10.1247/csf.9.381.
The effect of the local anesthetic dibucaine on the membrane ultrastructure of sterol-manipulated Tetrahymena pyriformis (NT-1 strain) was studied by freeze-fracture electron microscopy. Dibucaine-treated, ergosterol-replaced Tetrahymena cells had marked alterations in their plasma membranes. IMP-free small depressions (exoplasmic fracture face) and protrusions (protoplasmic fracture face) were formed on the plasma membranes which was in contact with the outer alveolar membrane. In addition, large IMP-free surface "blebs" covered with hexagonally-arranged depressions and protrusions appeared on both the plasma and outer alveolar membranes. These "blebs" were pinched off when the membranes were severely affected. Our previous study (28) demonstrated that the plasma membrane of dibucaine-treated native Tetrahymena cells that contain tetrahymanol showed vertical displacement of its intramembranous particles and that subsequently a smooth, flat surface appeared. Therefore, the structural changes in ergosterol-replaced membranes produced by dibucaine differ strikingly from changes in the native membranes. The remarkable difference in the ultrastructural deformation of the plasma membrane probably is due to a difference in the membrane lipid composition induced by sterol-manipulation.
通过冷冻蚀刻电子显微镜研究了局部麻醉药丁卡因对经固醇处理的梨形四膜虫(NT-1株)膜超微结构的影响。用丁卡因处理、经麦角固醇替代的四膜虫细胞,其质膜有明显改变。在与外泡膜接触的质膜上形成了无整合膜蛋白的小凹陷(外质断裂面)和突起(原生质断裂面)。此外,在质膜和外泡膜上都出现了大的、无整合膜蛋白的表面“泡”,其表面覆盖着六边形排列的凹陷和突起。当膜受到严重影响时,这些“泡”会被掐断。我们之前的研究(28)表明,含有四膜虫醇的经丁卡因处理的天然四膜虫细胞的质膜,其膜内颗粒会发生垂直位移,随后会出现光滑、平坦的表面。因此,丁卡因引起的经麦角固醇替代的膜的结构变化与天然膜的变化显著不同。质膜超微结构变形的显著差异可能是由于固醇处理引起的膜脂质组成差异所致。