Roussi Stamatiki, Gossé Francine, Aoudé-Werner Dalal, Zhang Xin, Marchioni Eric, Geoffroy Philippe, Miesch Michel, Raul Francis
INSERM U682, Université Louis Pasteur EA3430, IRCAD, 1, place de l'Hôpital, BP406, 67091, Strasbourg-Cedex, France.
Apoptosis. 2007 Jan;12(1):87-96. doi: 10.1007/s10495-006-0485-y.
We reported previously that 7beta-hydroxysitosterol and 7beta-hydroxycholesterol induced apoptosis in Caco-2 cells. Apoptosis caused by 7beta-hydroxysitosterol but not by 7beta-hydroxycholesterol was related to a caspase-dependent process. In the present report, we compared the effects of both compounds on mitochondria integrity and on various modulators of apoptosis. When Caco-2 cells were exposed to both hydroxysterols, no changes in Bcl-2 and Bax expressions were detected indicating a Bcl-2/Bax-independent cell death pathway, whereas loss of mitochondrial membrane potential and cytochrome c release were observed. Endonuclease G expression and enhanced production of reactive oxygen species were detected in 7beta-hydroxycholesterol treated cells, but not with 7beta-hydroxysitosterol. Loss of mitochondrial membrane potential and cell death produced by both hydroxysterols were prevented by vitamin C. Lysosomal membrane integrity was altered with both hydroxysterols, but 7beta-hydroxysitosterol was significantly more active on than 7beta-hydroxycholesterol. Both hydroxysterols induced apoptosis by mitochondrial membrane permeabilization. However, 7beta-hydroxycholesterol exhibited a specific enhancement of oxidative stress and of endonuclease G expression despite its closely related chemical structure with 7beta-hydroxysitosterol. The two hydroxysterols exhibit different lipophilic properties which may explain their different biological effects.
我们之前报道过,7β-羟基谷甾醇和7β-羟基胆固醇可诱导Caco-2细胞凋亡。由7β-羟基谷甾醇而非7β-羟基胆固醇引起的凋亡与半胱天冬酶依赖性过程有关。在本报告中,我们比较了这两种化合物对线粒体完整性和各种凋亡调节因子的影响。当Caco-2细胞暴露于这两种羟基甾醇时,未检测到Bcl-2和Bax表达的变化,表明这是一条不依赖Bcl-2/Bax的细胞死亡途径,而线粒体膜电位的丧失和细胞色素c的释放则被观察到。在7β-羟基胆固醇处理的细胞中检测到核酸内切酶G的表达和活性氧的产生增加,但在7β-羟基谷甾醇处理的细胞中未检测到。维生素C可阻止这两种羟基甾醇引起的线粒体膜电位丧失和细胞死亡。两种羟基甾醇均会改变溶酶体膜的完整性,但7β-羟基谷甾醇的活性明显高于7β-羟基胆固醇。两种羟基甾醇均通过线粒体膜通透性增加诱导细胞凋亡。然而,尽管7β-羟基胆固醇与7β-羟基谷甾醇的化学结构密切相关,但它表现出氧化应激和核酸内切酶G表达的特异性增强。这两种羟基甾醇表现出不同的亲脂性,这可能解释了它们不同的生物学效应。