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Apoptosis and growth arrest induced by platinum compounds in U2-OS cells reflect a specific DNA damage recognition associated with a different p53-mediated response.

机译:U2-OS细胞中铂化合物诱导的细胞凋亡和生长停滞反映了与不同p53介导的反应相关的特定DNA损伤识别。

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Mononuclear and multinuclear platinum complexes are known to induce distinct types of DNA lesions and exhibit different profiles of antitumor activity, in relation to p53 mutational status. In this study, we investigated the cellular effects of exposure to two platinum compounds (cisplatin and the multinuclear platinum complex BBR 3464), in the osteosarcoma cell line, U2-OS, carrying the wild-type p53 gene and capable of undergoing apoptosis or cell cycle arrest in response to diverse genotoxic stresses. In spite of the ability of both compounds to up-regulate p53 at cytotoxic concentrations, exposure to BBR 3464 resulted in cell cycle arrest but only cisplatin was capable of inducing significant levels of apoptosis and phosphorylation at the Ser15 residue of p53. The cisplatin-induced protein phosphorylation, not detectable in cells treated with BBR 3464, was associated with RPA phosphorylation, a specific up-regulation of Bax and down-regulation of p21(WAF1). Cells treated with BBR 3464 displayed a different cellular response with evidence of cytostasis associated with a high induction of p21(WAF1). The regulation of p21(WAF1) after cisplatin or BBR 3464 exposure required a p53 signal, as documented using stable transfectants expressing a dominant-negative form of p53 (175(his)). Taken together, these results indicate that cellular response to different genotoxic lesions (i.e. apoptosis or growth arrest) is associated with a specific recognition of DNA damage and a different p53-mediated signaling pathway. Multinuclear platinum complexes could be regarded as useful tools for investigating the p53-mediated process of cell cycle arrest in response to DNA damage. doi:10.1038/sj.cdd.4401109
机译:已知与p53突变状态相关的单核和多核铂复合物可诱导不同类型的DNA损伤并显示出不同的抗肿瘤活性。在这项研究中,我们研究了在骨肉瘤细胞系U2-OS中,暴露于两种铂化合物(顺铂和多核铂复合物BBR 3464)的细胞效应,该细胞系携带野生型p53基因并能够凋亡或凋亡响应多种遗传毒性胁迫而停止循环。尽管两种化合物均具有在细胞毒性浓度上调p53的能力,但暴露于BBR 3464会导致细胞周期停滞,但只有顺铂能够在p53的Ser15残基上诱导显着水平的凋亡和磷酸化。顺铂诱导的蛋白磷酸化在BBR 3464处理的细胞中无法检测到,与RPA磷酸化,Bax的特定上调和p21(WAF1)的下调相关。用BBR 3464处理的细胞表现出不同的细胞反应,并具有与p21(WAF1)的高诱导相关的细胞停滞的证据。顺铂或BBR 3464暴露后对p21​​(WAF1)的调节需要p53信号,如使用表达p53显性负型的稳定转染子所证实(175(his))。综上所述,这些结果表明对不同遗传毒性损伤(即细胞凋亡或生长停滞)的细胞应答与DNA损伤的特异性识别和不同的p53介导的信号传导途径有关。多核铂配合物可以被认为是研究p53介导的DNA损伤细胞周期停滞过程的有用工具。 doi:10.1038 / sj.cdd.4401109

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