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首页> 外文期刊>Oncogene >Integrative network biology analysis identifies miR-508-3p as the determinant for the mesenchymal identity and a strong prognostic biomarker of ovarian cancer
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Integrative network biology analysis identifies miR-508-3p as the determinant for the mesenchymal identity and a strong prognostic biomarker of ovarian cancer

机译:综合网络生物学分析将MIR-508-3P识别为间充质鉴定的决定因素和卵巢癌的强预后生物标志物

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摘要

Ovarian cancer is a heterogeneous malignancy that poses tremendous clinical challenge. Based on unsupervised classification of whole-genome gene expression profiles, four molecular subtypes of ovarian cancer were recently identified. However, single-driver molecular events specific to these subtypes have not been clearly elucidated. We aim to characterize the regulatory mechanisms underlying the poor prognosis mesenchymal subtype of ovarian cancer using a systems biology approach, involving a variety of molecular modalities including gene and microRNA expression profiles. miR-508-3p emerged as the most powerful determinant that regulates a cascade of dysregulated genes in the mesenchymal subtype, including core genes involved in epithelial–mesenchymal transition (EMT) program. Moreover, miR-508-3p down-regulation, due to promoter hypermethylation, was directly correlated with metastatic behaviors in vitro and in vivo. Taken together, our multidimensional network analysis identified miR-508-3p as a master regulator that defines the mesenchymal subtype and provides a novel prognostic biomarker to improve management of this disease.
机译:卵巢癌是一种异质性恶性肿瘤,造成巨大的临床挑战。基于全基因组基因表达谱的未经监督分类,最近鉴定了四种卵巢癌的分子亚型。然而,没有明确阐明特异于这些亚型的单驾驶员分子事件。我们的目标是使用系统生物学方法表征卵巢癌差的卵巢癌差的监管机制,涉及各种分子模态,包括基因和MicroRNA表达谱。 miR-508-3p作为最强大的决定因素,调节间充质亚型中的次要化学基因的级联,包括参与上皮 - 间充质转换(EMT)程序的核心基因。此外,由于启动子超甲基化,MiR-508-3P下调与体外和体内的转移性行为直接相关。我们的多维网络分析鉴定为miR-508-3p作为主要调节剂,其定义了间充质亚型,并提供了一种新的预后生物标志物,以改善这种疾病的管理。

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