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首页> 外文期刊>Nucleic Acids Research >Integrative analysis identifies targetable CREB1/FoxA1 transcriptional co-regulation as a predictor of prostate cancer recurrence
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Integrative analysis identifies targetable CREB1/FoxA1 transcriptional co-regulation as a predictor of prostate cancer recurrence

机译:整合分析确定可靶向的CREB1 / FoxA1转录共调控作为前列腺癌复发的预测因子

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Identifying prostate cancer-driving transcription factors (TFs) in addition to the androgen receptor promises to improve our ability to effectively diagnose and treat this disease. We employed an integrative genomics analysis of master TFs CREB1 and FoxA1 in androgen-dependent prostate cancer (ADPC) and castration-resistant prostate cancer (CRPC) cell lines, primary prostate cancer tissues and circulating tumor cells (CTCs) to investigate their role in defining prostate cancer gene expression profiles. Combining genome-wide binding site and gene expression profiles we define CREB1 as a critical driver of pro-survival, cell cycle and metabolic transcription programs. We show that CREB1 and FoxA1 co-localize and mutually influence each other's binding to define disease-driving transcription profiles associated with advanced prostate cancer. Gene expression analysis in human prostate cancer samples found that CREB1/FoxA1 target gene panels predict prostate cancer recurrence. Finally, we showed that this signaling pathway is sensitive to compounds that inhibit the transcription co-regulatory factor MED1. These findings not only reveal a novel, global transcriptional co-regulatory function of CREB1 and FoxA1, but also suggest CREB1/FoxA1 signaling is a targetable driver of prostate cancer progression and serves as a biomarker of poor clinical outcomes.
机译:除雄激素受体外,鉴定前列腺癌驱动转录因子(TFs)有望提高我们有效诊断和治疗该疾病的能力。我们对雄激素依赖性前列腺癌(ADPC)和去势抵抗性前列腺癌(CRPC)细胞系,原发性前列腺癌组织和循环肿瘤细胞(CTC)中的主要TF CREB1和FoxA1进行了综合基因组学分析,以研究它们在定义中的作用前列腺癌基因表达谱。结合全基因组结合位点和基因表达谱,我们将CREB1定义为促存活,细胞周期和代谢转录程序的关键驱动力。我们显示,CREB1和FoxA1共同定位并相互影响彼此的结合,以定义与晚期前列腺癌相关的疾病驱动转录谱。人类前列腺癌样本中的基因表达分析发现,CREB1 / FoxA1目标基因组可预测前列腺癌的复发。最后,我们表明该信号通路对抑制转录共调节因子MED1的化合物敏感。这些发现不仅揭示了CREB1和FoxA1的新颖的全球转录共调节功能,而且还暗示CREB1 / FoxA1信号传导是前列腺癌进展的可靶向驱动因素,并且是不良临床预后的生物标志。

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