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CpG island methylation affects accessibility of the proximal BRCA1 promoter to transcription factors

机译:CpG岛甲基化影响近端BRCA1启动子对转录因子的可及性

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To understand the mechanism of transcriptional down-regulation of BRCA1 by promoter methylation, we screened 51 breast cancer cell lines and identified HCC38 as another BRCA1 promoter-methylated cell line in addition to UACC3199. There was low expression of BRCA1 mRNA and BRCA1 protein in both cell lines as measured by quantitative RT-PCR and western blot analysis. After transient treatment with 5-aza-2′-deoxycytidine (5-aza-CdR) and trichostatin A (TSA), re-expression of BRCA1 mRNA and BRCA1 protein was detected in UACC3199 cells, but not in HCC38 cells. Another demethylating agent, zebularine, did not induce BRCA1 re-expression in either cell line. To test the hypothesis that methylation of CpG sites may affect accessibility of the BRCA1 promoter to transcription factors and consequently cause down-regulation of BRCA1, we analyzed the binding of four transcription factors (CTCF, Sp1, E2F1 and E2F6) to the BRCA1 promoter using chromatin immunoprecipitation assay (ChIP) and quantitative PCR. CTCF and E2F1 were enriched at the unmethylated BRCA1 promoter in MCF-7 cells. In contrast, these two transcription factors were not enriched at the methylated BRCA1 promoter in UACC3199 and HCC38 cells. Following demethylating drug treatment, E2F1 was enriched at the BRCA1 promoter in the demethylated UACC3199 cells. This indicates that reduced accessibility of transcription factors to the methylated promoter is one of the mechanisms for down-regulation of BRCA1 in heavily methylated cancer cells.
机译:为了了解启动子甲基化对BRCA1转录下调的机制,我们筛选了51种乳腺癌细胞系,并将HCC38鉴定为除UACC3199之外的另一种BRCA1启动子甲基化的细胞系。通过定量RT-PCR和western印迹分析测量,两种细胞系中BRCA1 mRNA和BRCA1蛋白的表达均较低。用5-氮杂2'-脱氧胞苷(5-氮杂-CdR)和曲古抑菌素A(TSA)进行瞬时处理后,在UACC3199细胞中检测到BRCA1 mRNA和BRCA1蛋白的重新表达,但在HCC38细胞中未检测到。另一种脱甲基剂zebularine在任一细胞系中均未诱导BRCA1重新表达。为了检验CpG位点甲基化可能影响BRCA1启动子对转录因子的可及性并因此导致BRCA1下调的假设,我们使用以下方法分析了四个转录因子(CTCF,Sp1,E2F1和E2F6)与BRCA1启动子的结合染色质免疫沉淀测定(ChIP)和定量PCR。 CTCF和E2F1在MCF-7细胞中未甲基化的BRCA1启动子处富集。相反,这两个转录因子在UACC3199和HCC38细胞中甲基化的BRCA1启动子上未富集。脱甲基药物处理后,E2F1在脱甲基UACC3199细胞中的BRCA1启动子富集。这表明转录因子对甲基化启动子的可及性降低是严重甲基化癌细胞中BRCA1下调的机制之一。

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