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首页> 外文期刊>Antioxidants and redox signalling >Mitochondrially Targeted Vitamin E Succinate Modulates Expression of Mitochondrial DNA Transcripts and Mitochondrial Biogenesis
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Mitochondrially Targeted Vitamin E Succinate Modulates Expression of Mitochondrial DNA Transcripts and Mitochondrial Biogenesis

机译:线粒体靶向维生素E琥珀酸酯调节线粒体DNA转录本的表达和线粒体的生物发生。

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Aims: To assess the effect of mitochondrially targeted vitamin E (VE) analogs on mitochondrial function and biogenesis. Results: Mitochondrially targeted vitamin E succinate (MitoVES) is an efficient inducer of apoptosis in cancer cells. Here, we show that unlike its untargeted counterpart alpha-tocopheryl succinate, MitoVES suppresses proliferation of cancer cells at sub-apoptotic doses by way of affecting the mitochondrial DNA (mtDNA) transcripts. We found that MitoVES strongly suppresses the level of the displacement loop transcript followed by those of mtDNA genes coding for subunits of mitochondrial complexes. This process is coupled to the inhibition of mitochondrial respiration, dissipation of the mitochondrial membrane potential, and generation of reactive oxygen species. In addition, exposure of cancer cells to MitoVES led to decreased expression of TFAM and diminished mitochondrial biogenesis. The inhibition of mitochondrial transcription was replicated in vivo in a mouse model of HER2(high) breast cancer, where MitoVES lowered the level of mtDNA transcripts in cancer cells but not in normal tissue. Innovation: Our data show that mitochondrially targeted VE analogs represent a novel class of mitocans that not only induce apoptosis at higher concentrations but also block proliferation and suppress normal mitochondrial function and transcription at low, non-apoptogenic doses. Conclusions: Our data indicate a novel, selective anti-cancer activity of compounds that act by targeting mitochondria of cancer cells, inducing significant alterations in mitochondrial function associated with transcription of mtDNA-coded genes. These changes subsequently result in the arrest of cell proliferation. Antioxid. Redox Signal. 22, 883-900.
机译:目的:评估线粒体靶向维生素E(VE)类似物对线粒体功能和生物发生的影响。结果:线粒体靶向的维生素E琥珀酸酯(MitoVES)是癌细胞凋亡的有效诱导剂。在这里,我们表明,与其未靶向的对应物α-生育酚琥珀酸酯不同,MitoVES通过影响线粒体DNA(mtDNA)转录本来抑制亚凋亡剂量下癌细胞的增殖。我们发现,MitoVES强烈抑制置换环转录本的水平,其次是编码线粒体复合物亚基的mtDNA基因的水平。该过程与线粒体呼吸的抑制,线粒体膜电位的耗散以及活性氧的产生有关。此外,癌细胞暴露于MitoVES会导致TFAM的表达降低,线粒体的生物发生减少。线粒体转录的抑制作用在HER2(高)乳腺癌小鼠模型中体内复制,其中MitoVES降低了癌细胞中而非正常组织中的mtDNA转录水平。创新:我们的数据表明,线粒体靶向的VE类似物代表一类新型的线粒体,不仅可以在较高浓度下诱导细胞凋亡,而且在低剂量,非凋亡剂量下也能阻止增殖并抑制正常的线粒体功能和转录。结论:我们的数据表明,该化合物具有新的选择性抗癌活性,该化合物可靶向癌细胞的线粒体,诱导与mtDNA编码基因转录相关的线粒体功能发生重大变化。这些变化随后导致细胞增殖的停止。抗氧化。氧化还原信号。 22,883-900。

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