首页> 外文期刊>International journal of oncology >Piperlongumine exerts cytotoxic effects against cancer cells with mutant p53 proteins at least in part by restoring the biological functions of the tumor suppressor
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Piperlongumine exerts cytotoxic effects against cancer cells with mutant p53 proteins at least in part by restoring the biological functions of the tumor suppressor

机译:哌隆定至少部分地通过恢复肿瘤抑制因子的生物学功能而对具有突变型p53蛋白的癌细胞产生细胞毒性作用

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Piperlongumine (PL), a small molecule alkaloid present in black pepper (Piper longum), has been reported to kill tumor cells irrespective of their p53 gene status, however, the mechanisms involved are unknown. Since p53 is a redox-sensitive protein, we hypothesized that the redox imbalance induced by PL may affect the structure and/or function of the mutant p53 protein and promote cell death. We used two human colon cancer cell lines, the HT29 and SW620 which harbor the R273H DNA contact abrogatory mutation in p53. PL treatment induced significant ROS production and protein glutathionylation with a concomitant increase in Nrf-2 expression in both cell lines. Surprisingly, immunoprecipitation with wt-p53 specific antibodies (PAb1620) or direct western blotting showed a progressive generation of wild-type-like p53 protein along with a loss of its mutant counterpart in PL-treated HT29 and SW620 cells. Moreover, the EMSA and DNA-affinity blotting revealed a time-dependent restoration of DNA-binding for the mutant p53, which was accompanied by the induction of p53 target genes, MDM2 and Bax. PL, while cytotoxic by itself, also increased the cell killing by many anticancer drugs. In nude mice bearing the HT29 tumors, PL alone (7.5?mg/kg daily) produced a 40% decrease in tumor volume, which was accompanied by diminished intratumoral mutant p53 protein levels. The antitumor efficacy of BCNU or doxorubicin in HT29 xenografts was highly potentiated by PL, followed by expression of apoptotic proteins. These clinically-relevant findings suggest that PL-induced oxidative milieu facilitates a weak functional restoration of mutant p53 through protein glutathionylation and contributes to the increased drug sensitivity.
机译:据报道,存在于黑胡椒(Piper longum)中的小分子生物碱Piperlongumine(PL)可以杀死肿瘤细胞,而不论其p53基因的状态如何,但是其机制尚不清楚。由于p53是氧化还原敏感蛋白,我们假设PL诱导的氧化还原失衡可能影响突变体p53蛋白的结构和/或功能并促进细胞死亡。我们使用了两种人类结肠癌细胞系HT29和SW620,它们在p53中具有R273H DNA接触废除突变。 PL处理诱导两种细胞系中显着的ROS产生和蛋白谷胱甘肽酰化,同时Nrf-2表达增加。出乎意料的是,用wt-p53特异性抗体(PAb1620)进行的免疫沉淀或直接Western印迹显示,在PL处理的HT29和SW620细胞中,野生型p53蛋白逐渐产生,并且其突变对应物也丢失。此外,EMSA和DNA亲和印迹揭示了突变体p53的DNA结合具有时间依赖性的恢复,伴随着p53靶基因MDM2和Bax的诱导。 PL,尽管本身具有细胞毒性,但也增加了许多抗癌药物对细胞的杀伤力。在患有HT29肿瘤的裸鼠中,单独的PL(每天7.5?mg / kg)可减少40%的肿瘤体积,并伴有肿瘤内突变体p53蛋白水平的降低。 PL可以高度增强BCNU或阿霉素在HT29异种移植物中的抗肿瘤功效,然后表达凋亡蛋白。这些与临床相关的发现表明,PL诱导的氧化环境通过蛋白质谷胱甘肽酰化促进突变体p53的弱功能恢复,并有助于增加药物敏感性。

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