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Identification of Novel Gene Expression Targets for the Ras Association Domain Family 1 (RASSF1A) Tumor Suppressor Gene in Non-Small Cell Lung Cancer and Neuroblastoma

机译:非小细胞肺癌和神经母细胞瘤中的Ras关联域家族1(RASSF1A)肿瘤抑制基因的新型基因表达目标的鉴定。

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摘要

RASSF1A is a recently identified 3p21.3 tumor suppressor gene. The high frequency of epigenetic inactivation of this gene in a wide range of human sporadic cancers including non-small cell lung cancer (NSCLC) and neuroblastoma suggests that RASSF1A inactivation is important for tumor development. Although little is known about the function of RASSF1A, preliminary data suggests that it may have multiple functions. To gain insight into RASSF1A functions in an unbiased manner, we have characterized the expression profile of a lung cancer cell line (A549) transfected with RASSF1A. Initially we demonstrated that transient expression of RASSF1A into the NSCLC cell line A549 induced G1 cell cycle arrest, as measured by propidium iodide staining. Furthermore, an-nexin-V staining showed that RASSF1A-expressing cells had an increased sensitivity to staurosporine-induced apoptosis. We then screened a cDNA microarray containing more than 6000 probes to identify genes differentially regulated by RASSF1A. Sixty-six genes showed at least a 2-fold change in expression. Among these were many genes with relevance to tumorigenesis involved in transcription, cytoskeleton, signaling, cell cycle, cell adhesion, and apoptosis. For 22 genes we confirmed the microarray results by real-time RT-PCR and/or Northern blotting. In silico, we were able to confirm the majority of these genes in other NSCLC cell lines using published data on gene expression profiles. Furthermore, we confirmed 10 genes at the RNA level in two neuroblastoma cell lines, indicating that these RASSF1A target genes have relevance in non-lung cell backgrounds. Protein analysis of six genes (ETS2, Cyclin D3, CDH2, DAPK1, TXN, and CTSL) showed that the changes induced by RASSF1A at the RNA level correlated with changes in protein expression in both non-small cell lung cancer and neuroblastoma cell lines. Finally, we have used a transient assay to demonstrate the induction of CDH2 and TGM2 by RASSF1A in NSCLC cell lines. We have identified several novel targets for RASSF1A tumor suppressor gene both at the RNA and the protein levels in two different cellular backgrounds. The identified targets are involved in diverse cellular processes; this should help toward understanding mechanisms that contribute to RASSF1A biological activity.
机译:RASSF1A是最近发现的3p21.3肿瘤抑制基因。该基因的表观遗传失活在包括非小细胞肺癌(NSCLC)和神经母细胞瘤在内的各种人类零星癌症中的发生频率很高,这表明RASSF1A失活对于肿瘤的发展很重要。尽管对RASSF1A的功能知之甚少,但初步数据表明它可能具有多种功能。为了以无偏见的方式深入了解RASSF1A功能,我们表征了转染RASSF1A的肺癌细胞系(A549)的表达特征。最初我们证明,通过碘化丙锭染色可知,RASSF1A在NSCLC细胞系A549中的瞬时表达可诱导G1细胞周期停滞。此外,annexin-V染色显示,表达RASSF1A的细胞对星形孢菌素诱导的细胞凋亡具有更高的敏感性。然后,我们筛选了一个包含6000多个探针的cDNA微阵列,以鉴定受RASSF1A差异调控的基因。六十六个基因显示出至少2倍的表达变化。其中有许多与肿瘤发生有关的基因,涉及转录,细胞骨架,信号传导,细胞周期,细胞粘附和凋亡。对于22个基因,我们通过实时RT-PCR和/或Northern印迹证实了微阵列结果。在计算机上,我们能够使用已发表的基因表达谱数据确认其他NSCLC细胞系中的大多数基因。此外,我们在两个神经母细胞瘤细胞系中的RNA水平上确认了10个基因,表明这些RASSF1A靶基因在非肺细胞背景中具有相关性。对六个基因(ETS2,Cyclin D3,CDH2,DAPK1,TXN和CTSL)的蛋白质分析表明,RASSF1A在RNA水平上诱导的变化与非小细胞肺癌和神经母细胞瘤细胞系中蛋白质表达的变化相关。最后,我们使用了瞬态试验来证明RASSF1A在NSCLC细胞系中诱导CDH2和TGM2。我们已经在两个不同细胞背景下的RNA和蛋白质水平上确定了 RASSF1A 抑癌基因的几个新靶标。鉴定出的靶标涉及多种细胞过程。这应该有助于理解有助于 RASSF1A 生物活性的机制。

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