首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Wnt antagonist DKK1 acts as a tumor suppressor gene that induces apoptosis and inhibits proliferation in human renal cell carcinoma.
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Wnt antagonist DKK1 acts as a tumor suppressor gene that induces apoptosis and inhibits proliferation in human renal cell carcinoma.

机译:Wnt拮抗剂DKK1充当肿瘤抑制基因,在人类肾细胞癌中诱导凋亡并抑制增殖。

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摘要

The functional significance of Wnt antagonist DKK1 has not been investigated in renal cell carcinoma (RCC). Therefore, we hypothesized that DKK1 may be a tumor suppressor gene and is epigenetically silenced, thus decreased DKK1 may cause progression of RCC. To assess the function of DKK1, we established stable DKK1 transfected cells and monitored them regarding cell viability, colony formation, apoptosis, cell cycle, and invasive capability. RCC cell lines had decreased levels of DKK1, which were increased after treatment with 5-Aza-2'-deoxycytidine and trichostatin A. In chromatin immunoprecipitation assay, the level of dimethyl H3K9 and trimethyl H3K27 was decreased after 5-Aza-2'-deoxycytidine/trichostatin A treatment in RCC cell lines. Increased methylation was also associated with higher pathological stages in primary RCC tissues. T-cell factor/lymphoid enhancer factor activity and nuclear beta-catenin expression were not changed in DKK1 transfectants. Also the expression of cyclinD1 and c-Myc was not changed in DKK1 transfectants. These results suggest that DKK1 may not be involved in the beta-catenin dependent pathway. We also evaluated the expression of various related genes. Cleaved caspase3, p53, p21 and puma expression were significantly upregulated in the DKK1 transfected cells. The population of apoptotic cells was increased in stable DKK1 cells and tumor growth suppression was also observed in nude mice with DKK1 transfected cells. In conclusion, this is the first report to show that DKK1 expression is epigenetically silenced in kidney cancer and its reexpression induces apoptosis and cell cycle arrest in RCC.
机译:Wnt拮抗剂DKK1的功能意义尚未在肾细胞癌(RCC)中进行研究。因此,我们假设DKK1可能是一个抑癌基因,并且在表观遗传上被沉默,因此DKK1的降低可能导致RCC的进展。为了评估DKK1的功能,我们建立了稳定的DKK1转染细胞,并就细胞活力,集落形成,凋亡,细胞周期和侵袭能力进行了监测。 RCC细胞株的DKK1水平降低,而5-Aza-2'-脱氧胞苷和曲古抑菌素A处理后DKK1水平升高。在染色质免疫沉淀试验中,5-Aza-2'-后二甲基H3K9和三甲基H3K27的水平降低。脱氧胞苷/ trichostatin A在RCC细胞系中的治疗。甲基化增加还与原发性RCC组织中较高的病理阶段有关。在DKK1转染子中T细胞因子/淋巴增强因子活性和核β-catenin表达未改变。在DKK1转染子中,cyclinD1和c-Myc的表达也没有改变。这些结果表明DKK1可能不参与β-catenin依赖途径。我们还评估了各种相关基因的表达。切割的caspase3,p53,p21和puma表达在DKK1转染的细胞中显着上调。在稳定的DKK1细胞中凋亡细胞的数量增加,并且在用DKK1转染的细胞的裸鼠中也观察到肿瘤生长的抑制。总之,这是第一个显示DKK1表达在肾癌中在表观遗传上沉默的报告,其重新表达可诱导RCC中的细胞凋亡和细胞周期停滞。

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