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α-生育酚和α-生育三烯酚的结构与动态膜特性:对其抗氧化能力分子机制的启示。

Structural and dynamic membrane properties of alpha-tocopherol and alpha-tocotrienol: implication to the molecular mechanism of their antioxidant potency.

作者信息

Suzuki Y J, Tsuchiya M, Wassall S R, Choo Y M, Govil G, Kagan V E, Packer L

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Biochemistry. 1993 Oct 12;32(40):10692-9. doi: 10.1021/bi00091a020.

Abstract

d-alpha-Tocopherol and d-alpha-tocotrienol are two vitamin E constituents having the same aromatic chromanol "head" but different hydrocarbon "tails". alpha-Tocotrienol has been shown to be more potent in protecting against free radical-induced oxidative stress than alpha-tocopherol. Simple models of phospholipid membrane systems were used to investigate the mechanism of the antioxidant potency of alpha-tocotrienol in terms of its effects on membrane order and reorientation dynamics. Chemiluminescence and fluorescence measurements demonstrated that alpha-tocotrienol exhibits significantly greater peroxyl radical scavenging potency than alpha-tocopherol in phosphatidylcholine liposomes, whereas both antioxidants have identical activity in hexane. This suggests that the antioxidant potency of alpha-tocotrienol requires the membrane environment. When alpha-tocopherol and alpha-tocotrienol were examined for their effects on phospholipid molecular order using conventional ESR spin labeling with 5- and 16-position-labeled doxylstearic acid, although both vitamin E constituents disordered the gel phase and stabilized the liquid-crystalline phase, no differences were observed between the effects of the two compounds. A slightly greater increase (19% vs 15%) in ordering of the liquid-crystalline state due to alpha-tocopherol, however, was discerned in noninvasive 2H NMR experiments. The difference is most noticeable near C10-C13 positions of the phospholipid chain, possibly suggesting alpha-tocotrienol is located closer to the membrane surface. Saturation-transfer ESR, furthermore, revealed that on the time scale tau c = 10(-7)-10(-3) s the rates of rotation about the long molecular axis and of the wobbling motion of the axis are modified to differing extents by the two forms of the vitamin E.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

d-α-生育酚和d-α-生育三烯酚是维生素E的两种成分,它们具有相同的芳香色满醇“头部”,但烃“尾部”不同。已证明α-生育三烯酚在抵御自由基诱导的氧化应激方面比α-生育酚更有效。使用磷脂膜系统的简单模型,从α-生育三烯酚对膜有序性和重排动力学的影响方面研究其抗氧化效力的机制。化学发光和荧光测量表明,在磷脂酰胆碱脂质体中,α-生育三烯酚表现出比α-生育酚显著更高的过氧自由基清除能力,而两种抗氧化剂在己烷中的活性相同。这表明α-生育三烯酚的抗氧化效力需要膜环境。当使用5-和16-位标记的硬脂酸基氮氧自由基通过传统的电子自旋共振(ESR)自旋标记法检测α-生育酚和α-生育三烯酚对磷脂分子有序性的影响时,尽管两种维生素E成分都使凝胶相无序化并稳定了液晶相,但未观察到两种化合物的作用之间存在差异。然而,在非侵入性的2H核磁共振实验中,发现α-生育酚导致液晶态有序性的增加略大(19%对15%)。这种差异在磷脂链的C10-C13位置附近最为明显,这可能表明α-生育三烯酚更靠近膜表面。此外,饱和转移ESR显示,在时间尺度τc = 10^(-7)-10^(-3) s上,维生素E的两种形式对围绕长分子轴的旋转速率和轴的摆动运动速率有不同程度的改变。(摘要截于250字)

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