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首页> 外文期刊>Biochemical Pharmacology >Poly(ADPR)polymerase inhibition and apoptosis induction in cDDP-treated human carcinoma cell lines.
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Poly(ADPR)polymerase inhibition and apoptosis induction in cDDP-treated human carcinoma cell lines.

机译:聚(ADPR)聚合酶在cDDP处理的人癌细胞系中的抑制和凋亡诱导。

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摘要

Poly(ADPR)polymerases' (PARPs) inhibitors potentiate the cytotoxic effects of chemotherapeutic agents like alkylating compounds and TOPO I poisons, while their action in combination with cisplatin still needs investigation. In fact, one of the earliest responses to DNA single- or double-strand breaks is the synthesis of poly(ADP-ribose) (PAR) by PARPs; these enzymes are components of DNA repair machineries and substrates of caspases. Cisplatin (cDDP) yields intra- and inter-strand DNA cross-links and several proteins that recognise cDDP-induced DNA damage, such as p53, are also targets of poly(ADP-ribosyl)ation. We compared the effects of treatments with cDDP and the PARPs inhibitor PJ34 in p53 mutated carcinoma cell lines (HeLa, KB, HT29) that exhibited differential sensitivities to the drugs, in terms of cell growth inhibition and onset of apoptosis. In cDDP-resistant HT29 cells we determined: (i) PJ34 potentiation of cDDP-induced cell growth inhibition; (ii) an increment of PARP-1 automodification following cDDP treatment. In cDDP-sensitive HeLa cells, we found that the drug induced apoptotic cell death associated with caspase-dependent PARP-1 proteolysis.
机译:聚(ADPR)聚合酶(PARPs)抑制剂可增强化学治疗剂(如烷基化化合物和TOPO I毒物)的细胞毒性作用,尽管它们与顺铂联用的作用仍需研究。实际上,对DNA单链或双链断裂的最早反应之一是通过PARP合成聚(​​ADP-核糖)(PAR)。这些酶是DNA修复机制和胱天蛋白酶的底物。顺铂(cDDP)产生链内和链间DNA交联,识别cDDP诱导的DNA损伤的几种蛋白质(例如p53)也是聚(ADP-核糖基)化的目标。我们比较了cDDP和PARPs抑制剂PJ34在p53突变的癌细胞系(HeLa,KB,HT29)中的治疗效果,这些细胞系对药物表现出不同的敏感性,就细胞生长抑制和凋亡的发作而言。在耐cDDP的HT29细胞中,我们确定:(i)cDDP诱导的细胞生长抑制的PJ34增强; (ii)cDDP处理后PARP-1自动修饰的增加。在对cDDP敏感的HeLa细胞中,我们发现该药物诱导了与caspase依赖性PARP-1蛋白水解相关的凋亡细胞死亡。

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