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生育酚相关蛋白是一种配体依赖性转录激活因子。

Tocopherol-associated protein is a ligand-dependent transcriptional activator.

作者信息

Yamauchi J, Iwamoto T, Kida S, Masushige S, Yamada K, Esashi T

机构信息

Division of Applied Food Research, National Institute of Health and Nutrition, 1-23-1 Toyama, Shinjyuku, Japan.

出版信息

Biochem Biophys Res Commun. 2001 Jul 13;285(2):295-9. doi: 10.1006/bbrc.2001.5162.

Abstract

Vitamin E is a term that encompasses a group of potent, lipid-soluble, chain-breaking antioxidants. Structural analysis reveals that molecules having vitamin E activity include four isomers (alpha, beta, gamma, and delta) of both tocopherols and tocotrienols. Alpha-tocopherol has been shown to have the highest biological vitamin E activity in mammalian tissues based on fetal resorption assays, and it reverses vitamin E deficiency symptoms. Although the molecular functions fulfilled specifically by alpha-tocopherol have yet to be fully described, it is unlikely that they are limited to general antioxidant functions. Here we show the functional characterization of alpha-tocopherol associated protein, TAP, which displays significant sequence similarity to the alpha-tocopherol transfer protein. Ligand competition analysis showed that recombinant TAP binds to alpha-tocopherol but not to other isomers of tocopherols. Using GFP fusion protein expression system, we observed that TAP translocates from cytosol to nuclei in alpha-tocopherol-dependent fashion. Transient transfection experiment showed that TAP activates transcription of the reporter gene in alpha-tocopherol-dependent manner. These results suggest that the biological function of alpha-tocopherol is not only as an antioxidant but also as a transcriptional regulator of gene expression via association with a transcription factor TAP.

摘要

维生素E是一个统称,涵盖了一组具有强大抗氧化能力的脂溶性链断裂抗氧化剂。结构分析表明,具有维生素E活性的分子包括生育酚和生育三烯酚的四种异构体(α、β、γ和δ)。基于胚胎吸收试验,α-生育酚在哺乳动物组织中已被证明具有最高的生物维生素E活性,并且它能逆转维生素E缺乏症状。尽管α-生育酚所特有的分子功能尚未完全阐明,但它们不太可能仅限于一般的抗氧化功能。在此,我们展示了α-生育酚相关蛋白TAP的功能特性,该蛋白与α-生育酚转运蛋白具有显著的序列相似性。配体竞争分析表明,重组TAP与α-生育酚结合,但不与生育酚的其他异构体结合。使用绿色荧光蛋白融合蛋白表达系统,我们观察到TAP以α-生育酚依赖的方式从细胞质转移到细胞核。瞬时转染实验表明,TAP以α-生育酚依赖的方式激活报告基因的转录。这些结果表明,α-生育酚的生物学功能不仅是作为一种抗氧化剂,而且还通过与转录因子TAP结合,作为基因表达的转录调节因子。

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