Poznan University of Life Sciences, Department of Physics, Poland.
Biophys Chem. 2010 Feb;146(2-3):92-7. doi: 10.1016/j.bpc.2009.10.009. Epub 2009 Nov 3.
Vitamin E is poorly soluble in aqueous solutions. Enhanced physiological activity is expected from synthesized glycosidic tocopherol derivatives. We investigated binding, location and interactions of newly synthesized DL-alpha-tocopheryl beta D glucopyranoside (II) in phosphatidylcholine liposomes using fluorescence emission, anisotropy and lifetime methods. In liposomes emission maximum and fluorescence lifetime of glucoside were similar to those observed in methanol. High fluorescence anisotropy value indicates that tocopheryl glucoside is located in restricted mobility region of the membrane. Thermodynamic calculation indicated efficient partition of (II) into membrane. The energy minimization calculations of electrostatic potential distribution of (II) and solvation energies performed with Gaussian program confirmed strong affinity of glucosidic moiety for ionic interactions and supported proposed model of interactions. The all obtained data indicate that DL-alpha-tocopheryl beta-glucoside is embedded into the membrane interior whereas sugar moiety protrudes above the water/lipid interface of the membrane surface.
维生素 E 在水溶液中溶解度差。预期合成的糖苷生育酚衍生物具有增强的生理活性。我们使用荧光发射、各向异性和寿命方法研究了新合成的 DL-α-生育酚 β-D-吡喃葡萄糖苷(II)在磷脂酰胆碱脂质体中的结合、定位和相互作用。在脂质体中,糖苷的发射最大值和荧光寿命与在甲醇中观察到的相似。高荧光各向异性值表明生育酚糖苷位于膜的受限流动性区域。热力学计算表明(II)有效地分配到膜中。使用 Gaussian 程序进行的(II)静电势能分布和溶剂化能的能量最小化计算证实了糖苷部分与离子相互作用的强烈亲和力,并支持了所提出的相互作用模型。所有获得的数据表明,DL-α-生育酚 β-葡萄糖苷嵌入到膜内部,而糖部分突出在膜表面的水/脂质界面上方。