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An integrative transcriptomics approach identifies miR-503 as a candidate master regulator of the estrogen response in MCF-7 breast cancer cells

机译:一体化转录组学方法将MIR-503识别为MCF-7乳腺癌细胞中雌激素反应的候选主调节剂

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Estrogen receptor alpha (ER alpha) is an important biomarker of breast cancer severity and a common therapeutic target. In response to estrogen, ER alpha stimulates a dynamic transcriptional program including both coding and noncoding RNAs. We generate a fine-scale map of expression dynamics by performing a temporal profiling of both messenger RNAs (mRNAs) and microRNAs (miRNAs) in MCF-7 cells (an ER+ model cell line for breast cancer) in response to estrogen stimulation. We identified three primary expression trends-transient, induced, and repressed-that were each enriched for genes with distinct cellular functions. Integrative analysis of mRNA and miRNA temporal expression profiles identified miR-503 as the strongest candidate master regulator of the estrogen response, in part through suppression of ZNF217-an oncogene that is frequently amplified in cancer. We confirmed experimentally that miR-503 directly targets ZNF217 and that overexpression of miR-503 suppresses MCF-7 cell proliferation. Moreover, the levels of ZNF217 and miR-503 are associated with opposite outcomes in breast cancer patient cohorts, with high expression of ZNF217 associated with poor survival and high expression of miR-503 associated with improved survival. Overall, these data indicate that miR-503 acts as a potent estrogen-induced candidate tumor suppressor miRNA that opposes cellular proliferation and has promise as a novel therapeutic for breast cancer. More generally, our work provides a systems level framework for identifying functional interactions that shape the temporal dynamics of gene expression.
机译:雌激素受体α(ERα)是乳腺癌严重程度和常见治疗靶标的重要生物标志物。响应雌激素,ER alpha刺激包括编码和非编码RNA的动态转录程序。通过在MCF-7细胞(MIRNAS)和MICRNAS(MIRNAS)的时间分析(MIRNAS)在MCF-7细胞(ER +模型细胞系中用于乳腺癌)的时间谱来产生微尺度的表达动态图,响应于雌激素刺激。我们确定了三种主要表达趋势,诱导和抑制 - 均富集具有不同细胞功能的基因。 MRNA和miRNA时间表达谱的整合分析鉴定了MIR-503作为雌激素反应的最强候选主调节器,部分通过抑制ZNF217-癌症中经常扩增的癌基因。我们通过实验证实,miR-503直接靶向ZnF217,并且MiR-503的过表达抑制了MCF-7细胞增殖。此外,ZnF217和miR-503的水平与乳腺癌患者群体的相反结果相关,ZnF217的高表达与与改善的存活相关的MiR-503的差和miR-503的高表达相关。总的来说,这些数据表明miR-503作为有效的雌激素诱导的候选肿瘤抑制miRNA,反对细胞增殖,并承诺作为乳腺癌的新疗法。更一般地,我们的工作提供了一种用于识别塑造基因表达的时间动态的功能相互作用的系统级框架。

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