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α-生育酚磷酸酯——一种活性脂质介质?

alpha-Tocopheryl phosphate--an active lipid mediator?

机构信息

JM USDA-Human Nutr. Res. Ctr. On Aging, Tufts University, Boston, MA, USA.

出版信息

Mol Nutr Food Res. 2010 May;54(5):679-92. doi: 10.1002/mnfr.200900404.

Abstract

The vitamin E (alpha-tocopherol, alphaT) derivative, alpha-tocopheryl phosphate (alphaTP), is detectable in small amounts in plasma, tissues, and cultured cells. Studies done in vitro and in vivo suggest that alphaT can become phosphorylated and alphaTP dephosphorylated, suggesting the existence of enzyme(s) with alphaT kinase or alphaTP phosphatase activity, respectively. As a supplement in animal studies, alphaTP can reach plasma concentrations similar to alphaT and only a part is dephosphorylated; thus, alphaTP may act both as pro-vitamin E, but also as phosphorylated form of vitamin E with possibly novel regulatory activities. Many effects of alphaTP have been described: in the test tube alphaTP modulates the activity of several enzymes; in cell culture alphaTP affects proliferation, apoptosis, signal transduction, and gene expression; in animal studies alphaTP prevents atherosclerosis, ischemia/reperfusion injury, and induces hippocampal long-term potentiation. At the molecular level, alphaTP may act as a cofactor for enzymes, as an active lipid mediator similar to other phosphorylated lipids, or indirectly by altering membrane characteristics such as lipid rafts, fluidity, and curvature. In this review, the molecular and cellular activities of alphaTP are examined and the possible functions of alphaTP as a natural compound, cofactor and active lipid mediator involved in signal transduction and gene expression discussed.

摘要

维生素 E(α-生育酚,αT)的衍生物,α-生育酚磷酸酯(αTP),在血浆、组织和培养细胞中都能检测到少量存在。在体外和体内研究表明,αT 可以被磷酸化,αTP 可以去磷酸化,这表明存在分别具有αT 激酶或αTP 磷酸酶活性的酶。作为动物研究中的补充剂,αTP 可以达到与αT 相似的血浆浓度,并且只有一部分被去磷酸化;因此,αTP 可能既作为维生素 E 的前体发挥作用,也作为具有可能的新型调节活性的维生素 E 的磷酸化形式发挥作用。已经描述了αTP 的许多作用:在试管中,αTP 调节几种酶的活性;在细胞培养中,αTP 影响增殖、凋亡、信号转导和基因表达;在动物研究中,αTP 可预防动脉粥样硬化、缺血/再灌注损伤,并诱导海马长时程增强。在分子水平上,αTP 可能作为酶的辅助因子,作为类似于其他磷酸化脂质的活性脂质介质,或者通过改变膜特性(如脂筏、流动性和曲率)间接发挥作用。在这篇综述中,研究了αTP 的分子和细胞活性,并讨论了αTP 作为一种天然化合物、辅助因子和涉及信号转导和基因表达的活性脂质介质的可能功能。

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