染色体外DNA
增强子
染色质
DNA
转座因子
生物
遗传学
后转座子
癌基因
计算生物学
细胞生物学
癌症
基因组
转录因子
基因
质粒
细胞周期
作者
Katerina Kraft,Sedona E. Murphy,Matthew G. Jones,Quanming Shi,Aarohi Bhargava-Shah,Christy Luong,King L. Hung,Britney Jiayu He,Rui Li,Seung K Park,Natasha E. Weiser,Jens Luebeck,Vineet Bafna,Jef D. Boeke,Paul S. Mischel,Alistair N. Boettiger,Howard Y. Chang
标识
DOI:10.1101/2024.09.04.611262
摘要
Extrachromosomal DNA (ecDNA) is a hallmark of aggressive cancer, contributing to both oncogene amplification and tumor heterogeneity. Here, we used Hi-C, super-resolution imaging, and long-read sequencing to explore the nuclear architecture of MYC-amplified ecDNA in colorectal cancer cells. Intriguingly, we observed frequent spatial proximity between ecDNA and 68 repetitive elements which we called ecDNA-interacting elements or EIEs. To characterize a potential regulatory role of EIEs, we focused on a fragment of the L1M4a1#LINE/L1 which we found to be co-amplified with MYC on ecDNA, gaining enhancer-associated chromatin marks in contrast to its normally silenced state. This EIE, in particular, existed as a naturally occurring structural variant upstream of MYC, gaining oncogenic potential in the transcriptionally permissive ecDNA environment. This EIE sequence is sufficient to enhance MYC expression and is required for cancer cell fitness. These findings suggest that silent repetitive genomic elements can be reactivated on ecDNA, leading to functional cooption and amplification. Repeat element activation on ecDNA represents a mechanism of accelerated evolution and tumor heterogeneity and may have diagnostic and therapeutic potential.
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