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Negative regulation of the oncogenic transcription factor FoxM1 by thiazolidinediones and mithramycin.

机译:噻唑烷二酮和光神霉素对致癌转录因子FoxM1的负调控。

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The Forkhead Box transcription factor FoxM1 regulates expression of genes that promote cell cycle progression, and it plays essential roles in the development of liver, lung, prostate and colorectal tumors. Thiazolidinediones (TZDs) activate the peroxisome proliferator-activated receptor gamma (PPARgamma), a ligand-activated nuclear receptor transcription factor. We found that treatment of the human hepatoma cell lines HepG2 and PLC/PRF/5 cells with TZDs leads to inhibition of FoxM1 gene expression. No PPARgamma/retinoid X receptor (RXR) consensus DNA binding sites were detected in the FoxM1 promoter extending to -10 kb upstream, and knockdown of PPARgamma had no impact on TZD mediated downregulation of FoxM1 expression. Previously, others showed that PPARgamma agonists inhibit the expression and DNA-binding activity of the Sp1 transcription factor. Here we show that Sp1 binds to the FoxM1 promoter region and positively regulates FoxM1 transcription, while mithramycin, a chemotherapy drug that specifically binds GC rich sequences in the DNA and inhibits activities of Sp1, inhibits expression of FoxM1. Our data suggest that TZD mediated suppression of Sp1 is responsible for downregulation of FoxM1 gene expression. Inhibition of FoxM1 expression by TZDs provides a new mechanism for TZD mediated negative regulation of cancer cell growth. FoxM1 expression and activity in cancer cells can be targeted using PPARgamma agonists or the anti-neoplastic antibiotic mithramycin.
机译:Forkhead Box转录因子FoxM1调节促进细胞周期进程的基因的表达,并且在肝,肺,前列腺和结肠直肠肿瘤的发生中起重要作用。噻唑烷二酮(TZD)激活过氧化物酶体增殖物激活的受体伽玛(PPARgamma),这是一种配体激活的核受体转录因子。我们发现用TZDs治疗人肝癌细胞系HepG2和PLC / PRF / 5细胞可抑制FoxM1基因表达。在延伸到上游-10 kb的FoxM1启动子中未检测到PPARgamma /类维生素X受体(RXR)共有DNA结合位点,并且敲低PPARgamma对TZD介导的FoxM1表达下调没有影响。以前,其他研究表明PPARgamma激动剂抑制Sp1转录因子的表达和DNA结合活性。在这里,我们显示Sp1与FoxM1启动子区域结合并正向调节FoxM1转录,而光神霉素是一种特异结合DNA中富含GC的序列并抑制Sp1活性的化疗药物,抑制FoxM1的表达。我们的数据表明,TZD介导的Sp1抑制是FoxM1基因表达下调的原因。 TZD抑制FoxM1表达为TZD介导的癌细胞生长负调控提供了新的机制。可以使用PPARγ激动剂或抗肿瘤抗生素光神霉素来靶向癌细胞中FoxM1的表达和活性。

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