Vejux Anne, Guyot Stéphane, Montange Thomas, Riedinger Jean-Marc, Kahn Edmond, Lizard Gérard
Inserm U866, Faculté des Sciences Gabriel, 6 Bd Gabriel, 21000 Dijon, France.
J Nutr Biochem. 2009 Jan;20(1):45-61. doi: 10.1016/j.jnutbio.2007.12.001. Epub 2008 May 20.
Among the oxysterols accumulating in atherosclerotic plaque, 7-ketocholesterol (7KC) is a potent apoptotic inducer, which favours myelin figure formation and polar lipid accumulation. This investigation performed on U937 cells consisted in characterizing the myelin figure formation process; determining the effects of 7KC on the PI3-K/PDK-1/Akt signalling pathway; evaluating the activities of vitamin E (Vit-E) (alpha-tocopherol) on the formation of myelin figures and the PI3-K/PDK-1/Akt signalling pathway and assessing the effects of PI3-K inhibitors (LY-294002, 3-methyladenine) on the activity of Vit-E on cell death and polar lipid accumulation. The ultrastructural and biochemical characteristics of myelin figures (multilamellar cytoplasmic inclusions rich in phospholipids and 7KC present in acidic vesicles and the reversibility of these alterations) support the hypothesis that 7KC is an inducer of phospholipidosis. This oxysterol also induces important changes in lipid content and/or organization of the cytoplasmic membrane demonstrated with merocyanine 540 and fluorescence anisotropy, a loss of PI3-K activity and dephosphorylation of PDK-1 and Akt. It is noteworthy that Vit-E was able to counteract phospholipidosis and certain apoptotic associated events (caspase activation, lysosomal degradation) to restore PI3-K activity and to prevent PDK-1 and Akt dephosphorylation. When Vit-E was associated with LY-294002 or 3-methyladenine, impairment of 7KC-induced apoptosis was inhibited, and accumulation of polar lipids was less counteracted. Thus, 7KC-induced apoptosis is a PI3-K-dependent event, and Vit-E up- and down-regulates PI3-K activity and phospholipidosis, respectively.
在动脉粥样硬化斑块中积聚的氧化甾醇中,7-酮胆固醇(7KC)是一种强效的凋亡诱导剂,它有利于髓鞘样结构的形成和极性脂质的积累。这项对U937细胞进行的研究包括:表征髓鞘样结构的形成过程;确定7KC对PI3-K/PDK-1/Akt信号通路的影响;评估维生素E(Vit-E)(α-生育酚)对髓鞘样结构形成和PI3-K/PDK-1/Akt信号通路的作用;以及评估PI3-K抑制剂(LY-294002、3-甲基腺嘌呤)对Vit-E在细胞死亡和极性脂质积累方面活性的影响。髓鞘样结构的超微结构和生化特征(富含磷脂的多层细胞质内含物以及存在于酸性囊泡中的7KC,以及这些改变的可逆性)支持了7KC是磷脂沉积症诱导剂的假说。这种氧化甾醇还会引起脂质含量和/或细胞质膜组织的重要变化,这通过部花青540和荧光各向异性得以证明,同时伴有PI3-K活性丧失以及PDK-1和Akt的去磷酸化。值得注意的是,Vit-E能够抵消磷脂沉积症和某些与凋亡相关的事件(半胱天冬酶激活、溶酶体降解),以恢复PI3-K活性并防止PDK-1和Akt去磷酸化。当Vit-E与LY-294002或3-甲基腺嘌呤联合使用时,7KC诱导的凋亡损伤受到抑制,极性脂质的积累得到的抵消作用减弱。因此,7KC诱导的凋亡是一个依赖PI3-K的事件,而Vit-E分别上调和下调PI3-K活性以及磷脂沉积症。