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首页> 外文期刊>Human Genomics >The up-regulation of Myb may help mediate EGCG inhibition effect on mouse lung adenocarcinoma
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The up-regulation of Myb may help mediate EGCG inhibition effect on mouse lung adenocarcinoma

机译:Myb的上调可能有助于介导EGCG对小鼠肺腺癌的抑制作用

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Background Green tea polyphenol epigallocatechin-3-gallate (EGCG) has been demonstrated to inhibit cancer in experimental studies through its antioxidant activity and modulations on cellular functions by binding specific proteins. By means of computational analysis and functional genomic approaches, we previously identified a set of protein coding genes and microRNAs whose expressions were significantly modulated in response to the EGCG treatment in tobacco carcinogen-induced lung adenocarcinoma in A/J mice. However, to what degree these genes are involved in the cancer inhibition of EGCG remains unclear. Results In this study, we further employed statistical methods and literature research to analyze these data in combination with The Cancer Genome Atlas (TCGA) lung adenocarcinoma datasets for additional data mining. Under the assumption that, if a gene mediates EGCG’s cancer inhibition, its expression level change caused by EGCG should be opposite to what occurred in the carcinogenesis, we identified Myb and Peg3 as the primary putative genes involved in the cancer inhibitory activity. Further analysis suggested that the regulation of Myb could be mediated through an EGCG-upregulated microRNA, miR-449c-5p. Conclusions Although the actions of EGCG involve multiple targets/pathways, further analysis by mining the existing genomic datasets revealed that the upregulations of Myb and Peg3 are likely the key anti-cancer events of EGCG in vivo.
机译:背景技术绿茶多酚表没食子儿茶素-3-没食子酸酯(EGCG)在实验研究中已被证明可通过其抗氧化活性和结合特定蛋白质对细胞功能的调节来抑制癌症。通过计算分析和功能基因组学方法,我们先前鉴定了一组蛋白质编码基因和微小RNA,其表达在响应于烟草致癌物诱发的肺腺癌的A / J小鼠中的EGCG处理后被显着调节。然而,尚不清楚这些基因在多大程度上参与了对EGCG的癌症抑制。结果在这项研究中,我们进一步采用统计学方法和文献研究,结合癌症基因组图谱(TCGA)肺腺癌数据集来分析这些数据,以进行其他数据挖掘。假设如果某个基因介导了EGCG的癌症抑制作用,那么它由EGCG引起的表达水平变化应该与癌变过程中发生的变化相反,我们确定Myb和Peg3是参与癌症抑制活性的主要推定基因。进一步的分析表明,Myb的调控可通过EGCG上调的microRNA miR-449c-5p介导。结论尽管EGCG的作用涉及多个靶标/途径,但通过挖掘现有基因组数据集进行的进一步分析显示,Myb和Peg3的上调可能是体内EGCG的关键抗癌事件。

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