Kitagawa S, Matsubayashi M, Kotani K, Usui K, Kametani F
Faculty of Pharmaceutical Sciences, University of Tokushima, Japan.
J Membr Biol. 1991 Feb;119(3):221-7. doi: 10.1007/BF01868727.
Membrane fluidity of bovine platelets was examined with diphenylhexatriene (DPH), its cationic trimethylammonium derivative (TMA-DPH) and anionic propionic acid derivative (DPH-PA). After addition of these probes to platelet suspensions at 37 degrees C, the fluorescence intensity of DPH-PA reached equilibrium within 2 min, whereas those of DPH and TMA-DPH increased gradually. With increase in the fluorescence intensity of TMA-DPH, its fluorescence anisotropy decreased significantly, but the fluorescence anisotropies of DPH-PA and DPH did not change during incubation. The gradual increase of fluorescence intensity of TMA-DPH was due to its penetration into the cytoplasmic side of the platelet membrane, as shown quantitatively by monitoring decrease in its extractability with albumin. Transbilayer movement of TMA-DPH was markedly temperature-dependent, and was scarcely observed at 15 degrees C. The fluorescence intensity of TMA-DPH was much higher in platelet membranes and vesicles of extracted membrane lipids than the initial intensity in intact platelets. Moreover, the fluorescence anisotropy of TMA-DPH was much lower in the former preparations than the initial value in intact platelets. These results suggest that binding sites for TMA-DPH in the cytoplasmic side of the platelet membrane are more fluid than those in the outer leaflet of the plasma membrane. Platelet activation by ionomycin induced specific change in the fluorescence properties of TMA-DPH without causing transbilayer incorporation of the probe.
用二苯基己三烯(DPH)、其阳离子三甲基铵衍生物(TMA-DPH)和阴离子丙酸衍生物(DPH-PA)检测牛血小板的膜流动性。在37℃将这些探针加入血小板悬液后,DPH-PA的荧光强度在2分钟内达到平衡,而DPH和TMA-DPH的荧光强度则逐渐增加。随着TMA-DPH荧光强度的增加,其荧光各向异性显著降低,但在孵育过程中DPH-PA和DPH的荧光各向异性没有变化。TMA-DPH荧光强度的逐渐增加是由于其渗透到血小板膜的细胞质一侧,通过监测其与白蛋白的可提取性降低定量显示。TMA-DPH的跨膜运动明显依赖温度,在15℃几乎未观察到。TMA-DPH在血小板膜和提取的膜脂囊泡中的荧光强度远高于完整血小板中的初始强度。此外,TMA-DPH在前者制剂中的荧光各向异性远低于完整血小板中的初始值。这些结果表明,血小板膜细胞质一侧TMA-DPH的结合位点比质膜外小叶中的结合位点流动性更大。离子霉素诱导的血小板活化引起TMA-DPH荧光特性的特异性变化,而不会导致探针的跨膜掺入。