Dockter M E, Trumble W R, Magnuson J A
Proc Natl Acad Sci U S A. 1978 Mar;75(3):1319-23. doi: 10.1073/pnas.75.3.1319.
Chlortetracycline, a fluorescent probe of its own active transport, has been used to study lateral phase separations of membrane lipid in Bacillus megaterium cells. Arrhenius plots of initial accumulation rates are triphasic, with transitions or characteristic temperatures of 20 degrees and 9.5 degrees . At the higher temperature, the mobility of the chloretracycline, as measured by fluorescence polarization, is markedly altered. Chlortetracycline transport exhibits saturation kinetics, and fluorescence energy transfer from protein to bound antibiotic can be observed. N-Phenyl-1-naphthylamine, a lipophilic fluorescent probe, responds to changes in the hydrophobic regions of the membrane that are distinct from membrane protein. The fluorescent properties of N-phenylnaphthylamine in partitioning and polarization experiments are altered most significantly at the lower characteristic temperature. No fluorescence energy transfer between N-phenylnaphthylamine and membrane protein or bound tetracycline can be detected. In correlative electron spin resonance experiments on the partitioning of a lipid-soluble spin label, the same characteristic temperatures detected in the fluorescence studies were measured. These data suggest that different probes may respond to either or both of the characteristic temperatures describing the lateral phase separation. Between these characteristic temperatures the chlortetracycline transport system is most intimately associated with relatively immobile lipids that are surrounded by a more mobile lipid phase.
金霉素作为其自身主动运输的荧光探针,已被用于研究巨大芽孢杆菌细胞中膜脂的侧向相分离。初始积累速率的阿累尼乌斯曲线呈三相,转变温度或特征温度分别为20℃和9.5℃。在较高温度下,通过荧光偏振测量,金霉素的迁移率发生显著变化。金霉素运输呈现饱和动力学,并且可以观察到从蛋白质到结合抗生素的荧光能量转移。N-苯基-1-萘胺是一种亲脂性荧光探针,它对膜疏水区域的变化有反应,这些变化与膜蛋白不同。在较低的特征温度下,N-苯基萘胺在分配和偏振实验中的荧光特性变化最为显著。未检测到N-苯基萘胺与膜蛋白或结合的四环素之间的荧光能量转移。在关于脂溶性自旋标记物分配的相关电子自旋共振实验中,测量到了在荧光研究中检测到的相同特征温度。这些数据表明,不同的探针可能对描述侧向相分离的一个或两个特征温度有反应。在这些特征温度之间,金霉素运输系统与相对不移动的脂质最为密切相关,这些脂质被流动性更强的脂质相包围。