Department of Molecular Genetics & Microbiology, Duke University Medical Center, Durham, NC 27710, United States.
Methods. 2017 Aug 15;126:193-200. doi: 10.1016/j.ymeth.2017.05.012. Epub 2017 May 19.
Post-transcriptional regulation of gene expression by RNA binding proteins (RBPs) and non-coding RNAs plays an important role in global gene expression. Many post-transcriptional regulators are misexpressed and misregulated in cancers, resulting in altered programs of protein biosynthesis that can drive tumor progression. While comparative studies of several RBPs and microRNAs expressed in various cancer types have been reported, a model system that can be used to quantify RBP regulation and functional outcomes during the initiation and early stages of tumorigenesis is lacking. It was previously demonstrated that oncogenic transformation of normal human cells can be induced by expressing hTERT, p53, cyclin D1, CDK4, C-MYC and H-RAS. Here we describe a user-friendly method for generating this genetically defined model of step-wise tumorigenesis beginning with normal donor-derived human cells. This method immortalizes a donor's normal cells in about a week, reducing the chances of senescence. The entire stable system can be established in less than 12weeks. We then demonstrate the utility of such a system in elucidating the expression of multiple RBPs at an early step of tumor formation. We identify significant changes in the expression levels of transcripts encoding RBPs prior to transformation, suggesting that our described donor-derived isogenic system can provide insight about post-transcriptional regulation during the earliest stages of tumorigenesis in the context of diverse genetic backgrounds.
RNA 结合蛋白 (RBPs) 和非编码 RNA 对基因表达的转录后调控在全局基因表达中起着重要作用。许多转录后调控因子在癌症中表达异常和失调,导致蛋白质生物合成程序发生改变,从而推动肿瘤的进展。虽然已经报道了几种在不同癌症类型中表达的 RBPs 和 microRNAs 的比较研究,但缺乏可用于在肿瘤发生的起始和早期阶段量化 RBP 调控和功能结果的模型系统。先前已经证明,通过表达端粒酶逆转录酶 (hTERT)、p53、细胞周期蛋白 D1、CDK4、C-MYC 和 H-RAS,可以诱导正常人细胞的致癌转化。在这里,我们描述了一种用户友好的方法,用于从正常人源细胞开始生成这种逐步肿瘤发生的遗传定义模型。该方法在大约一周内使供体的正常细胞永生化,降低衰老的可能性。整个稳定系统可以在不到 12 周的时间内建立。然后,我们证明了这种系统在阐明肿瘤形成早期多个 RBPs 的表达中的实用性。我们在转化前鉴定了编码 RBPs 的转录本表达水平的显著变化,表明我们描述的供体来源的同基因系统可以在不同遗传背景下提供关于肿瘤发生最早阶段转录后调控的见解。