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首页> 外文期刊>Investigational new drugs. >The sirtuin 1/2 inhibitor tenovin-1 induces a nonlinear apoptosis-inducing factor-dependent cell death in a p53 null Ewing's sarcoma cell line
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The sirtuin 1/2 inhibitor tenovin-1 induces a nonlinear apoptosis-inducing factor-dependent cell death in a p53 null Ewing's sarcoma cell line

机译:Sirtuin 1/2抑制剂Tenovin-1诱导P53核肌肉细胞系中的非线性凋亡诱导因子依赖性细胞死亡

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摘要

The sirtuin 1/2 inhibitor tenovin-1 activates p53 and may have potential in the management of cancer. Here. we investigated the responsiveness of Ewing's sarcoma cells to tenovin-1. We examined its effects in two Ewing's sarcoma cell lines with different p53 status, i.e. in p53 wild-type and p53 null cells. Effects were assessed by flow cytometric analyses of cell death, mitochondrial membrane depolarization and reactive oxygen species (ROS) generation, by caspase 3/7 activity measurement, by mRNA expression profiling and by immunoblotting. Tenovin-1 elicited caspase-mediated cell death in p53 wild-type cells, but caspase-independent cell death in p53 null cells. Remarkably, it induced a nonlinear concentration response in the latter: low concentrations of tenovin-1 were much more effective than were higher concentrations. Tenovin-1 's effects in p53 null cells involved gene expression changes of Bcl-2 family members, mitochondrial membrane depolarization, nuclear translocation of apoptosis-inducing factor, ROS formation and DNA damage; all these effects followed a bell-shaped pattern. In conclusion, our results provide new insights into tenovin-1 's mode of action by demonstrating that it can induce different pathways of cell death.
机译:Sirtuin 1/2抑制剂Tenovin-1激活P53,可能在癌症管理中具有潜力。这里。我们调查了ewing的肉瘤细胞对Tenovin-1的响应性。我们在两个具有不同P53状态的两种EWINE的肉瘤细胞系中检查了它的效果,即在P53野生型和P53空细胞中。通过Caspase 3/7活性测量通过MRNA表达分析和免疫印迹,通过Caspase 3/7活性测量来评估细胞死亡,线粒体膜去极化和活性氧物种(ROS)的流式细胞术分析来评估效果。 Tenovin-1引发了P53野生型细胞中的Celliged Cell死亡,但在P53零细胞中均无型细胞死亡。值得注意的是,它诱导后者的非线性浓度反应:低浓度的替辛蛋白-1比较高浓度更有效。 Tenovin-1在P53核细胞中的效果涉及Bcl-2家族的基因表达变化,线粒体膜去极化,凋亡诱导因子,ROS形成和DNA损伤的核转移;所有这些效果都遵循了钟形图案。总之,我们的结果通过证明它可以诱导不同的细胞死亡途径来提供新的洞察力模式。

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