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DEK 癌蛋白调节转录修饰物,并维持肺高级别神经内分泌癌的肿瘤起始活性。

DEK oncoprotein regulates transcriptional modifiers and sustains tumor initiation activity in high-grade neuroendocrine carcinoma of the lung.

机构信息

Cancer Genomics Project, National Cancer Center Research Institute, Chuo-ku, Tokyo, Japan.

出版信息

Oncogene. 2010 Aug 19;29(33):4671-81. doi: 10.1038/onc.2010.217. Epub 2010 Jun 14.

Abstract

Lung cancer shows diverse histological subtypes. Large-cell neuroendocrine cell carcinoma and small-cell lung carcinoma show similar histological features and clinical behaviors, and can be classified as high-grade neuroendocrine carcinoma (HGNEC) of the lung. Here we elucidated the molecular classification of pulmonary endocrine tumors by copy-number profiling. We compared alterations of copy number with the clinical outcome of HGNEC and identified a chromosomal gain of the DEK oncogene locus (6p22.3) that was significantly associated with poor prognosis. We further confirmed that DEK overexpression was associated with poor prognosis in a larger set of HGNEC. Downregulation of DEK by small hairpin RNA led to a marked reduction of in vitro colony formation, in vivo tumorigenicity and chemo-resistance, and was associated with loss of lung cancer stem cell markers. Gene expression profiling revealed that DEK downregulation was associated with altered expression of transcriptional regulators, which specifically include known targets of interchromosomal translocations in hematopoietic tumors, and knockdown of these epigenetic modifiers affected colony formation activity. Our study showed that DEK overexpression, partly through an increase in its gene dose, mediates the activity of global transcriptional regulators and is associated with tumor initiation activity and poor prognosis in HGNEC.

摘要

肺癌表现出多种组织学亚型。大细胞神经内分泌细胞癌和小细胞肺癌具有相似的组织学特征和临床行为,可被归类为肺部高级别神经内分泌癌(HGNEC)。在这里,我们通过拷贝数谱分析阐明了肺内分泌肿瘤的分子分类。我们比较了拷贝数的改变与 HGNEC 的临床结果,并鉴定出 DEK 癌基因座(6p22.3)的染色体获得,这与预后不良显著相关。我们进一步证实,在更大的 HGNEC 样本集中,DEK 过表达与不良预后相关。通过短发夹 RNA 下调 DEK 导致体外集落形成、体内致瘤性和化疗耐药性明显降低,并与肺癌干细胞标志物的丧失相关。基因表达谱分析显示,DEK 下调与转录调节因子的表达改变相关,这些调节因子具体包括血液肿瘤中染色体间易位的已知靶点,并且这些表观遗传修饰物的敲低影响集落形成活性。我们的研究表明,DEK 过表达,部分通过增加其基因剂量,介导了全局转录调节因子的活性,并与 HGNEC 中的肿瘤起始活性和不良预后相关。

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