The Jackson Laboratory for Genomic Medicine, Farmington, CT 06032, USA.
Department of Neurosurgery, Henry Ford Hospital, Detroit, MI 48202, USA.
Cancer Cell. 2021 May 10;39(5):694-707.e7. doi: 10.1016/j.ccell.2021.03.006. Epub 2021 Apr 8.
Extrachromosomal, circular DNA (ecDNA) is emerging as a prevalent yet less characterized oncogenic alteration in cancer genomes. We leverage ChIA-PET and ChIA-Drop chromatin interaction assays to characterize genome-wide ecDNA-mediated chromatin contacts that impact transcriptional programs in cancers. ecDNAs in glioblastoma patient-derived neurosphere and prostate cancer cell cultures are marked by widespread intra-ecDNA and genome-wide chromosomal interactions. ecDNA-chromatin contact foci are characterized by broad and high-level H3K27ac signals converging predominantly on chromosomal genes of increased expression levels. Prostate cancer cells harboring synthetic ecDNA circles composed of characterized enhancers result in the genome-wide activation of chromosomal gene transcription. Deciphering the chromosomal targets of ecDNAs at single-molecule resolution reveals an association with actively expressed oncogenes spatially clustered within ecDNA-directed interaction networks. Our results suggest that ecDNA can function as mobile transcriptional enhancers to promote tumor progression and manifest a potential synthetic aneuploidy mechanism of transcription control in cancer.
染色体外环状 DNA(ecDNA)作为癌症基因组中一种普遍存在但特征尚不明确的致癌改变正在兴起。我们利用 ChIA-PET 和 ChIA-Drop 染色质相互作用分析来描述全基因组 ecDNA 介导的染色质相互作用,这些作用影响癌症中的转录程序。胶质母细胞瘤患者来源的神经球和前列腺癌细胞培养物中的 ecDNA 表现为广泛的 intra-ecDNA 和全基因组染色体相互作用。ecDNA-染色质接触焦点的特点是 broad 和 high-level H3K27ac 信号,主要集中在表达水平增加的染色体基因上。含有由特征性增强子组成的合成 ecDNA 环的前列腺癌细胞导致染色体基因转录的全基因组激活。以单分子分辨率解析 ecDNA 的染色体靶标揭示了与空间聚类在 ecDNA 定向相互作用网络内的活跃表达的致癌基因的关联。我们的结果表明,ecDNA 可以作为可移动的转录增强子,促进肿瘤进展,并在癌症中表现出潜在的合成非整倍体转录控制机制。