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首页> 外文期刊>BMC Cancer >Methylation of WTH3 , a possible drug resistant gene, inhibits p53 regulated expression
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Methylation of WTH3 , a possible drug resistant gene, inhibits p53 regulated expression

机译:WTH3的甲基化可能是一种耐药基因,可抑制p53调控的表达

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Background Previous results showed that over-expression of the WTH3 gene in MDR cells reduced MDR1 gene expression and converted their resistance to sensitivity to various anticancer drugs. In addition, the WTH3 gene promoter was hypermethylated in the MCF7/AdrR cell line and primary drug resistant breast cancer epithelial cells. WTH3 was also found to be directly targeted and up regulated by the p53 gene. Furthermore, over expression of the WTH3 gene promoted the apoptotic phenotype in various host cells. Methods To further confirm WTH3 's drug resistant related characteristics, we recently employed the small hairpin RNA (shRNA) strategy to knockdown its expression in HEK293 cells. In addition, since the WTH3 promoter's p53-binding site was located in a CpG island that was targeted by methylation, we were interested in testing the possible effect this epigenetic modification had on the p53 transcription factor relative to WTH3 expression. To do so, the in vitro methylation method was utilized to examine the p53 transgene's influence on either the methylated or non-methylated WTH3 promoter. Results The results generated from the gene knockdown strategy showed that reduction of WTH3 expression increased MDR1 expression and elevated resistance to Doxorubicin as compared to the original control cells. Data produced from the methylation studies demonstrated that DNA methylation adversely affected the positive impact of p53 on WTH3 promoter activity. Conclusion Taken together, our studies provided further evidence that WTH3 played an important role in MDR development and revealed one of its transcription regulatory mechanisms, DNA methylation, which antagonized p53 's positive impact on WTH3 expression.
机译:背景先前的结果表明,MDR细胞中WTH3基因的过表达降低了MDR1基因的表达,并将其对多种抗癌药的敏感性转化为耐药性。此外,WTH3基因启动子在MCF7 / AdrR细胞系和原发性耐药乳腺癌上皮细胞中被高度甲基化。还发现WTH3被p53基因直接靶向并上调。此外,WTH3基因的过度表达促进了各种宿主细胞的凋亡表型。方法为了进一步证实WTH3的抗药性相关特性,我们最近采用了小发夹RNA(shRNA)策略来抑制其在HEK293细胞中的表达。此外,由于WTH3启动子的p53结合位点位于甲基化靶向的CpG岛中,因此我们有兴趣测试这种表观遗传修饰相对于WTH3表达对p53转录因子的可能影响。为此,采用了体外甲基化方法来检查p53转基因对甲基化或非甲基化WTH3启动子的影响。结果从基因敲除策略产生的结果表明,与原始对照细胞相比,WTH3表达的降低增加了MDR1表达,并增加了对阿霉素的抗性。甲基化研究产生的数据表明,DNA甲基化不利地影响了p53对WTH3启动子活性的积极影响。结论综上所述,我们的研究提供了进一步的证据,表明WTH3在MDR的发展中发挥了重要作用,并揭示了其转录调控机制之一,即DNA甲基化,从而拮抗了p53对WTH3表达的积极影响。

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