生物
基因组
结构变异
计算生物学
染色体构象捕获
染色质
遗传学
复制计时
单倍型
鉴定(生物学)
癌变
癌症
DNA
基因
基因型
增强子
基因表达
植物
作者
Jesse R. Dixon,Jie Xu,Vishnu Dileep,Ye Zhan,Fan Song,Victoria T. Le,Galip Gürkan Yardımcı,Abhijit Chakraborty,Darrin V. Bann,Yanli Wang,Royden A. Clark,Lijun Zhang,Hongbo Yang,Tingting Liu,Sriranga Iyyanki,Lin An,Christopher Pool,Takayo Sasaki,Juan Carlos Rivera‐Mulia,Hakan Özadam
出处
期刊:Nature Genetics
[Nature Portfolio]
日期:2018-09-04
卷期号:50 (10): 1388-1398
被引量:389
标识
DOI:10.1038/s41588-018-0195-8
摘要
Structural variants (SVs) can contribute to oncogenesis through a variety of mechanisms. Despite their importance, the identification of SVs in cancer genomes remains challenging. Here, we present a framework that integrates optical mapping, high-throughput chromosome conformation capture (Hi-C), and whole-genome sequencing to systematically detect SVs in a variety of normal or cancer samples and cell lines. We identify the unique strengths of each method and demonstrate that only integrative approaches can comprehensively identify SVs in the genome. By combining Hi-C and optical mapping, we resolve complex SVs and phase multiple SV events to a single haplotype. Furthermore, we observe widespread structural variation events affecting the functions of noncoding sequences, including the deletion of distal regulatory sequences, alteration of DNA replication timing, and the creation of novel three-dimensional chromatin structural domains. Our results indicate that noncoding SVs may be underappreciated mutational drivers in cancer genomes.
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