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Enriched transcription factor binding sites in hypermethylated gene promoters in drug resistant cancer cells.

机译:耐药癌细胞中高甲基化基因启动子中富集的转录因子结合位点。

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MOTIVATION: In the human genome, 'CpG islands', CG-rich regions located in or near gene promoters, are normally unmethylated. However, in cancer cells, CpG islands frequently gain methylation, resulting in silencing of growth-limiting tumor suppressor genes. To our knowledge, the potential relationship between CpG island hypermethylation, transcription factor (TF) binding in local promoter regions and transcriptional control has not been previously explored in a genome-wide context. RESULTS: In this study, we utilized bioinformatics tools and TF binding site(TFBs) databases to globally analyze sequences methylated in a laboratory model for the development of drug-resistant cancer. Our results demonstrated that four TFBS were enriched in hypermethylated sequences. More interestingly, overrepresentation of these TFBS was observed in hyper-/hypo-methylated sequences where signi.cant changes in methylation levels were observed in drug-resistant cancer cells. In summary, we believe that these.ndings offer a means to further explore the relationship between DNA methylation and gene expression in drug resistance and tumorigenesis.
机译:动机:在人类基因组中,位于基因启动子内或附近的富含CG的'CpG岛'通常未被甲基化。然而,在癌细胞中,CpG岛经常获得甲基化,从而导致限制生长的肿瘤抑制基因沉默。据我们所知,CpG岛超甲基化,本地启动子区域中的转录因子(TF)结合和转录控制之间的潜在关系以前尚未在全基因组范围内探讨。结果:在这项研究中,我们利用生物信息学工具和TF结合位点(TFBs)数据库来全局分析在耐药模型发展中的实验室模型中甲基化的序列。我们的结果表明,四个TFBS富含高甲基化序列。更有趣的是,在高/低甲基化序列中观察到这些TFBS的过度表达,在耐药性癌细胞中观察到甲基化水平的显着变化。总而言之,我们相信这些发现为进一步探讨DNA甲基化与基因表达在耐药性和肿瘤发生中的关系提供了一种手段。

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