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Hyperthermia restores apoptosis induced by death receptors through aggregation-induced c-FLIP cytosolic depletion

机译:热疗通过聚集诱导的c-FLIP胞质耗竭恢复由死亡受体诱导的凋亡

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摘要

TRAIL is involved in immune tumor surveillance and is considered a promising anti-cancer agent owing to its limited side effects on healthy cells. However, some cancer cells display resistance, or become resistant to TRAIL-induced cell death. Hyperthermia can enhance sensitivity to TRAIL-induced cell death in various resistant cancer cell lines, including lung, breast, colon or prostate carcinomas. Mild heat shock treatment has been proposed to restore Fas ligand or TRAIL-induced apoptosis through c-FLIP degradation or the mitochondrial pathway. We demonstrate here that neither the mitochondria nor c-FLIP degradation are required for TRAIL-induced cell death restoration during hyperthermia. Our data provide evidence that insolubilization of c-FLIP, alone, is sufficient to enhance apoptosis induced by death receptors. Hyperthermia induced c-FLIP depletion from the cytosolic fraction, without apparent degradation, thereby preventing c-FLIP recruitment to the TRAIL DISC and allowing efficient caspase-8 cleavage and apoptosis. Hyperthermia-induced c-FLIP depletion was independent of c-FLIP DED2 FL chain assembly motif or ubiquitination-mediated c-FLIP degradation, as assessed using c-FLIP point mutants on lysine 167 and 195 or threonine 166, a phosphorylation site known to regulate ubiquitination of c-FLIP. Rather, c-FLIP depletion was associated with aggregation, because addition of glycerol not only prevented the loss of c-FLIP from the cytosol but also enabled c-FLIP recruitment within the TRAIL DISC, thus inhibiting TRAIL-induced apoptosis during hyperthermia. Altogether our results demonstrate that c-FLIP is a thermosensitive protein whose targeting by hyperthermia allows restoration of apoptosis induced by TNF ligands, including TRAIL. Our findings suggest that combining TRAIL agonists with whole-body or localized hyperthermia may be an interesting approach in cancer therapy.
机译:TRAIL参与免疫肿瘤监测,由于其对健康细胞的副作用有限,被认为是一种有前途的抗癌药。但是,某些癌细胞显示出抗性,或变得对TRAIL诱导的细胞死亡具有抗性。在包括肺癌,乳腺癌,结肠癌或前列腺癌在内的多种耐药癌细胞系中,热疗可以提高对TRAIL诱导的细胞死亡的敏感性。已经提出了轻度的热休克治疗以通过c-FLIP降解或线粒体途径恢复Fas配体或TRAIL诱导的凋亡。我们在这里证明,在高温期间TRAIL诱导的细胞死亡恢复均不需要线粒体或c-FLIP降解。我们的数据提供了单独的c-FLIP不溶化足以增强由死亡受体诱导的细胞凋亡的证据。热疗从胞质部分诱导c-FLIP消耗,而没有明显降解,从而防止c-FLIP募集到TRAIL DISC并允许有效的caspase-8裂解和凋亡。高热诱导的c-FLIP消耗与c-FLIP DED2 FL链装配基序或泛素介导的c-FLIP降解无关,如使用赖氨酸167和195或苏氨酸166上的c-FLIP点突变体评估的那样,苏氨酸166的磷酸化位点可调节c-FLIP的泛素化。相反,c-FLIP消耗与聚集有关,因为添加甘油不仅可以防止c-FLIP从细胞质中流失,而且还可以在TRAIL DISC中募集c-FLIP,从而抑制TRAIL诱导的热疗过程中的细胞凋亡。总的来说,我们的结果表明c-FLIP是一种热敏蛋白,通过热疗靶向可恢复由TNF配体(包括TRAIL)诱导的凋亡。我们的研究结果表明,将TRAIL激动剂与全身或局部热疗相结合可能是癌症治疗中一种有趣的方法。

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