生物
计算生物学
基因组
癌症
剧目
SNP阵列
SNP公司
单核苷酸多态性
变色
遗传学
全基因组测序
拷贝数分析
拷贝数变化
进化生物学
基因
DNA
基因组不稳定性
DNA损伤
基因型
物理
声学
作者
Ziyu Tao,Shixiang Wang,Chengquan Wu,Tao Wu,Xiangyu Zhao,Ning Wei,Qianqian Wang,Jinyu Wang,Jing Chen,Kaixuan Diao,Fuxiang Chen,Xue Song Liu
摘要
Abstract Copy number alterations (CNAs) are a predominant source of genetic alterations in human cancer and play an important role in cancer progression. However comprehensive understanding of the mutational processes and signatures of CNA is still lacking. Here we developed a mechanism-agnostic method to categorize CNA based on various fragment properties, which reflect the consequences of mutagenic processes and can be extracted from different types of data, including whole genome sequencing (WGS) and single nucleotide polymorphism (SNP) array. The 14 signatures of CNA have been extracted from 2778 pan-cancer analysis of whole genomes WGS samples, and further validated with 10 851 the cancer genome atlas SNP array dataset. Novel patterns of CNA have been revealed through this study. The activities of some CNA signatures consistently predict cancer patients’ prognosis. This study provides a repertoire for understanding the signatures of CNA in cancer, with potential implications for cancer prognosis, evolution and etiology.
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