首页> 外文期刊>The Journal of biological chemistry >Azadirone, a Limonoid Tetranortriterpene, Induces Death Receptors and Sensitizes Human Cancer Cells to Tumor Necrosis Factor-related Apoptosis-inducing Ligand (TRAIL) through a p53 Protein-independent Mechanism
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Azadirone, a Limonoid Tetranortriterpene, Induces Death Receptors and Sensitizes Human Cancer Cells to Tumor Necrosis Factor-related Apoptosis-inducing Ligand (TRAIL) through a p53 Protein-independent Mechanism

机译:氮酮,一种柠檬烷四素培养物,诱导死亡受体,并使人癌细胞敏感到肿瘤坏死因子相关的凋亡诱导配体(TRAP)通过P53蛋白质无关的机制

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Although tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) has shown efficacy in a phase 2 clinical trial, development of resistance to TRAIL by tumor cells is a major roadblock. We investigated whether azadirone, a limonoidal tetranortriterpene, can sensitize human tumor cells to TRAIL. Results indicate that azadirone sensitized cancer cells to TRAIL. The limonoid induced expression of death receptor (DR) 5 and DR4 but did not affect expression of decoy receptors in cancer cells. The induction of DRs was mediated through activation of ERK and through up-regulation of a transcription factor CCAAT enhancer-binding protein homologous protein (CHOP) as silencing of these signaling molecules abrogated the effect of azadirone. These effects of azadirone were cancer cell-specific. The CHOP binding site on the DR5 gene was required for induction of DR5 by azadirone. Up-regulation of DRs was mediated through the generation of reactive oxygen species (ROS) as ROS scavengers reduced the effect of azadirone on ERK activation, CHOP up-regulation, DR induction, and TRAIL sensitization. The induction of DRs by this limonoid was independent of p53, but sensitization to TRAIL was p53-dependent. The limonoid down-regulated the expression of cell survival proteins and up-regulated the proapoptotic proteins. The combination of azadirone with TRAIL was found to be additive at concentrations lower than IC50, whereas at higher concentrations, the combination was synergistic. Overall, this study indicates that azadirone can sensitize cancer cells to TRAIL through ROS-ERK-CHOP-mediated up-regulation of DR5 and DR4 signaling, down-regulation of cell survival proteins, and up-regulation of proapoptotic proteins.
机译:虽然肿瘤坏死因子相关的凋亡诱导配体(TRAIL)在相2临床试验中显示出疗效,但肿瘤细胞抗血迹的抗性发展是一个主要的障碍。我们调查了氮酮,一种唇形四植物,可以使人肿瘤细胞敏感到痕迹。结果表明,阿嗪酮致敏感癌细胞到迹线。褐藻素诱导死亡受体(DR)5和DR4的表达,但不影响癌细胞中诱饵受体的表达。通过激活ERK和通过转录因子CCAAT增强剂结合蛋白同源蛋白(CHOP)的上调来介导DRS的诱导,因为这些信号传导分子的沉默消除了氮杂酮的作用。氮杂金酮的这些效果是癌细胞特异性。 DR5基因上的切碎结合位点是通过阿氮酮诱导DR5的。由于ROS清除剂降低了Azadirone对ERK活化,切碎的调节,诱导和跟踪致敏的影响,通过产生反应性氧物种(ROS)来介导DRS的上调。这种唇盂的DRS诱导与P53无关,但对迹线的敏化是P53依赖性的。褐藻液下调细胞存活蛋白的表达及上调促凋亡蛋白。发现与迹线的氮酮的组合是在低于IC50的浓度下添加的添加剂,而在较高浓度下,该组合是协同的。总体而言,本研究表明,氮杂酮可以通过ROS-ERK-CHOP-CHOP介导的DR5和DR4信号传导,细胞存活蛋白的下调和凋亡蛋白的上调调节的癌细胞敏化癌细胞以进行癌细胞。

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