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Human Embryonic Stem Cells Acquire Responsiveness to TRAIL upon Exposure to Cisplatin

机译:人胚胎干细胞暴露于顺铂后对TRAIL有反应。

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摘要

Tumor necrosis factor-related apoptosis-inducing ligand—TRAIL—is a protein operating as a ligand capable of inducing apoptosis particularly in cancerously transformed cells, while normal healthy cells are typically nonresponsive. We have previously demonstrated that pluripotent human embryonic stem cells (hESC) are also refractory to TRAIL, even though they express all canonical components of the death receptor-induced apoptosis pathway. In this study, we have examined a capacity of DNA damage to provoke sensitivity of hESC to TRAIL. The extent of DNA damage, behavior of molecules involved in apoptosis, and response of hESC to TRAIL were investigated. The exposure of hESC to 1 μM and 2 μM concentrations of cisplatin have led to the formation of 53BP1 and γH2AX foci, indicating the presence of double-strand breaks in DNA, without affecting the expression of proteins contributing to mitochondrial membrane integrity. Interestingly, cisplatin upregulated critical components of the extrinsic apoptotic pathway—initiator caspase 8, effector caspase 3, and the cell death receptors. The observed increase of expression of the extrinsic apoptotic pathway components was sufficient to sensitize hESC to TRAIL-induced apoptosis; immense cell dying accompanied by enhanced PARP cleavage, processing of caspase 8, and full activation of caspase 3 were all observed after the treatment combining cisplatin and TRAIL. Finally, we have demonstrated the central role of caspase 8 in this process, since its downregulation abrogated the sensitizing effect of cisplatin.
机译:肿瘤坏死因子相关的凋亡诱导配体TRAIL是一种蛋白质,能够诱导凋亡,尤其是在癌变细胞中,而正常的健康细胞通常无反应。先前我们已经证明,多能人类胚胎干细胞(hESC)也对TRAIL无效,即使它们表达死亡受体诱导的凋亡途径的所有规范成分。在这项研究中,我们检查了DNA损伤引起hESC对TRAIL敏感性的能力。研究了DNA损伤的程度,参与凋亡的分子的行为以及hESC对TRAIL的反应。 hESC暴露于1μm和2μm浓度的顺铂中导致形成53BP1和γH2AX灶,表明DNA中存在双链断裂,而不影响有助于线粒体膜完整性的蛋白质表达。有趣的是,顺铂上调了外在凋亡途径的关键组成部分,即启动子胱天蛋白酶8,效应胱天蛋白酶3和细胞死亡受体。观察到的外在凋亡途径成分表达的增加足以使hESC对TRAIL诱导的细胞凋亡敏感。顺铂和TRAIL联合治疗后,观察到巨大的细胞死亡伴随着增强的PARP切割,caspase 8的加工以及caspase 3的完全活化。最后,我们已经证明了胱天蛋白酶8在该过程中的核心作用,因为其下调消除了顺铂的敏化作用。

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