Department of Genetics and Genome Sciences, Case Western Reserve University School of Medicine, Case Comprehensive Cancer Center, Cleveland, OH 44106, USA.
Princess Margaret Cancer Centre, University Health Network, Toronto, ON M5G 1L7, Canada.
Cell. 2019 Nov 27;179(6):1330-1341.e13. doi: 10.1016/j.cell.2019.10.039. Epub 2019 Nov 21.
Non-coding regions amplified beyond oncogene borders have largely been ignored. Using a computational approach, we find signatures of significant co-amplification of non-coding DNA beyond the boundaries of amplified oncogenes across five cancer types. In glioblastoma, EGFR is preferentially co-amplified with its two endogenous enhancer elements active in the cell type of origin. These regulatory elements, their contacts, and their contribution to cell fitness are preserved on high-level circular extrachromosomal DNA amplifications. Interrogating the locus with a CRISPR interference screening approach reveals a diversity of additional elements that impact cell fitness. The pattern of fitness dependencies mirrors the rearrangement of regulatory elements and accompanying rewiring of the chromatin topology on the extrachromosomal amplicon. Our studies indicate that oncogene amplifications are shaped by regulatory dependencies in the non-coding genome.
非编码区在癌基因边界之外的扩增在很大程度上被忽视了。我们使用一种计算方法,在五种癌症类型中发现了非编码 DNA 在扩增的癌基因边界之外发生显著共扩增的特征。在胶质母细胞瘤中,EGFR 与其在起源细胞类型中活跃的两个内源性增强子元件优先共扩增。这些调节元件及其接触点,以及它们对细胞适应性的贡献,在高水平的环状染色体外 DNA 扩增中得以保留。通过 CRISPR 干扰筛选方法对该基因座进行检测,揭示了多种影响细胞适应性的其他元件。适应性依赖的模式反映了调节元件的重排以及染色体外扩增子中染色质拓扑结构的伴随重布线。我们的研究表明,癌基因扩增受非编码基因组中调节依赖性的影响。