Harris R A, Schroeder F
J Pharmacol Exp Ther. 1982 Nov;223(2):424-31.
Synaptic plasma membranes (SPM) and myelin were prepared from mouse brain and their physical properties evaluated by fluorescence probes. 1,6,-Diphenyl-1,3,5-hexatriene (DPH) was used as a probe of the membrane core and endogenous tryptophan as a probe of membrane proteins. In vitro addition of pentobarbital or ethanol decreased the fluorescence polarization of DPH in SPM. These decreases were not due to changes in fluorescence lifetime and indicate that both drugs increased the rotation mobility of the probe in the membrane core. This action was shared by other barbiturates and their potencies were correlated with their lipid solubility. In contrast to the effect on SPM, pentobarbital increased the fluorescence polarization of DPH in SPM phospholipids but had little effect on the fluorescence polarization of DPH in a total lipid extract from SPM. Pentobarbital did not affect fluorescence polarization of DPH in myelin. Analysis of the temperature dependence of pentobarbital effects indicated that the initial rigidity of the membranes was one factor determining whether the drug decreased, increased or did not change the membrane fluidity. Pentobarbital decreased the fluorescence intensity of SPM tryptophan, but did not affect the fluorescence of free tryptophan. Ethanol did not alter tryptophan fluorescence. Thus, pentobarbital, but not ethanol, produced a detectable perturbation of synaptic proteins. These results indicate that both pentobarbital and ethanol fluidized the hydrophobic core of the membrane, but pentobarbital differed from ethanol in its action on very fluid lipid domains and on membrane proteins.
从鼠脑中制备突触质膜(SPM)和髓磷脂,并通过荧光探针评估其物理性质。1,6-二苯基-1,3,5-己三烯(DPH)用作膜核心的探针,内源性色氨酸用作膜蛋白的探针。体外添加戊巴比妥或乙醇可降低SPM中DPH的荧光偏振。这些降低并非由于荧光寿命的变化,表明两种药物均增加了探针在膜核心中的旋转流动性。其他巴比妥类药物也有这种作用,其效力与脂溶性相关。与对SPM的作用相反,戊巴比妥增加了SPM磷脂中DPH的荧光偏振,但对SPM总脂质提取物中DPH的荧光偏振影响很小。戊巴比妥不影响髓磷脂中DPH的荧光偏振。对戊巴比妥作用的温度依赖性分析表明,膜的初始刚性是决定药物是否降低、增加或不改变膜流动性的一个因素。戊巴比妥降低了SPM色氨酸的荧光强度,但不影响游离色氨酸荧光。乙醇不改变色氨酸荧光。因此,戊巴比妥而非乙醇对突触蛋白产生了可检测到的扰动。这些结果表明,戊巴比妥和乙醇均使膜的疏水核心流化,但戊巴比妥在对流动性很强的脂质结构域和膜蛋白的作用方面与乙醇不同。