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首页> 外文期刊>Journal of Cancer Research and Clinical Oncology >Thymidylate synthase inhibition induces p53-dependent and p53-independent apoptotic responses in human urinary bladder cancer cells.
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Thymidylate synthase inhibition induces p53-dependent and p53-independent apoptotic responses in human urinary bladder cancer cells.

机译:胸苷酸合酶抑制作用在人膀胱癌细胞中诱导p53依赖性和p53依赖性凋亡。

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PURPOSE: In search for more effective clinical protocols, the antimetabolite drug 5-fluorouracil (5-FU) has been successfully included in new regimens of bladder cancer combination chemotherapy. In the present study, we have investigated the effects of 5-FU treatment on apoptosis induction in wild-type and mutant p53 urinary bladder cancer cells. METHODS: We have used MTT-based assays, FACS analysis, Western blotting and semi-quantitative RT-PCR in RT4 and RT112 (grade I, wild-type p53), as well as in T24 (grade III, mutant p53) and TCCSUP (grade IV, mutant p53) human urinary bladder cancer cell lines. RESULTS: In the urothelial bladder cancer cell lines RT4 and T24, 5-FU-induced TS inhibition proved to be associated with cell type-dependent (a) sensitivity to the drug, (b) Caspase-mediated apoptosis, (c) p53 stabilization and activation, as well as Rb phosphorylation and E2F1 expression and (d) transcriptional regulation of p53 target genes and their cognate proteins, while an E2F-dependent transcriptional network did not seem to be critically engaged in such type of responses. CONCLUSIONS: We have shown that in the wild-type p53 context of RT4 cells, 5-FU-triggered apoptosis was prominently efficient and mainly regulated by p53-dependent mechanisms, whereas the mutant p53 environment of T24 cells was able to provide notable levels of resistance to apoptosis, basically ascribed to E2F-independent, and still unidentified, pathways. Nevertheless, the differential vulnerability of RT4 and T24 cells to 5-FU administration could also be associated with cell-type-specific transcriptional expression patterns of certain genes critically involved in 5-FU metabolism.
机译:目的:为寻求更有效的临床方案,抗代谢药物5-氟尿嘧啶(5-FU)已成功地纳入膀胱癌联合化疗的新方案。在本研究中,我们研究了5-FU处理对野生型和突变型p53膀胱癌细胞凋亡的影响。方法:我们在RT4和RT112(I级,野生型p53)以及T24(III级,突变型p53)和TCCSUP中使用了基于MTT的测定,FACS分析,蛋白质印迹和半定量RT-PCR。 (IV级,突变体p53)人膀胱癌细胞系。结果:在尿路上皮癌细胞系RT4和T24中,5-FU诱导的TS抑制被证明与细胞类型相关(a)对药物的敏感性,(b)Caspase介导的细胞凋亡,(c)p53稳定激活,Rb磷酸化和E2F1表达,以及(d)p53靶基因及其同源蛋白的转录调控,而依赖E2F的转录网络似乎并不参与这种类型的反应。结论:我们已经显示,在RT4细胞的野生型p53情况下,5-FU触发的凋亡显着有效,并且主要受p53依赖性机制调控,而T24细胞的突变p53环境能够提供显着水平的P53。对细胞凋亡的抗性,基本上归因于E2F依赖性且仍未确定的途径。尽管如此,RT4和T24细胞对5-FU施用的差异脆弱性也可能与关键参与5-FU代谢的某些基因的细胞类型特异性转录表达模式有关。

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