主页 文献库文献详情
PMID: 26833333 已发表 · ppublish 英语

Whole-Genome Sequencing Reveals Diverse Models of Structural Variations in Esophageal Squamous Cell Carcinoma.

American journal of human genetics ·第 98 卷 ·第 2 期 ·2016-06-22

Cheng Caixia, Zhou Yong, Li Hongyi, Xiong Teng, Li Shuaicheng, Bi Yanghui, Kong Pengzhou, Wang Fang, Cui Heyang, Li Yaoping, Fang Xiaodong, Yan Ting, Li Yike, Wang Juan, Yang Bin, Zhang Ling, Jia Zhiwu, Song Bin, Hu Xiaoling, Yang Jie, Qiu Haile, Zhang Gehong, Liu Jing, Xu Enwei, Shi Ruyi, Zhang Yanyan, Liu Haiyan, He Chanting, Zhao Zhenxiang, Qian Yu, Rong Ruizhou, Han Zhiwei, Zhang Yanlin, Luo Wen, Wang Jiaqian, Peng Shaoliang, Yang Xukui, Li Xiangchun, Li Lin, Fang Hu, Liu Xingmin, Ma Li, Chen Yunqing, Guo Shiping, Chen Xing, Xi Yanfeng, Li Guodong, Liang Jianfang, Yang Xiaofeng, Guo Jiansheng, Jia JunMei, Li Qingshan, Cheng Xiaolong, Zhan Qimin, Cui Yongping

摘要

Comprehensive identification of somatic structural variations (SVs) and understanding their mutational mechanisms in cancer might contribute to understanding biological differences and help to identify new therapeutic targets. Unfortunately, characterization of complex SVs across the whole genome and the mutational mechanisms underlying esophageal squamous cell carcinoma (ESCC) is largely unclear. To define a comprehensive catalog of somatic SVs, affected target genes, and their underlying mechanisms in ESCC, we re-analyzed whole-genome sequencing (WGS) data from 31 ESCCs using Meerkat algorithm to predict somatic SVs and Patchwork to determine copy-number changes. We found deletions and translocations with NHEJ and alt-EJ signature as the dominant SV types, and 16% of deletions were complex deletions. SVs frequently led to disruption of cancer-associated genes (e.g., CDKN2A and NOTCH1) with different mutational mechanisms. Moreover, chromothripsis, kataegis, and breakage-fusion-bridge (BFB) were identified as contributing to locally mis-arranged chromosomes that occurred in 55% of ESCCs. These genomic catastrophes led to amplification of oncogene through chromothripsis-derived double-minute chromosome formation (e.g., FGFR1 and LETM2) or BFB-affected chromosomes (e.g., CCND1, EGFR, ERBB2, MMPs, and MYC), with approximately 30% of ESCCs harboring BFB-derived CCND1 amplification. Furthermore, analyses of copy-number alterations reveal high frequency of whole-genome duplication (WGD) and recurrent focal amplification of CDCA7 that might act as a potential oncogene in ESCC. Our findings reveal molecular defects such as chromothripsis and BFB in malignant transformation of ESCCs and demonstrate diverse models of SVs-derived target genes in ESCCs. These genome-wide SV profiles and their underlying mechanisms provide preventive, diagnostic, and therapeutic implications for ESCCs.

关键词
ESCC breakage-fusion-bridge chromothripsis structural variation whole-genome duplication
文献信息
期刊
American journal of human genetics
期刊简称
Am J Hum Genet
发表日期
2016-06-22
收录日期
2016-02-06
更新日期
2016-08-04
语言
英语
国家/地区
United States
NLM ID
0370475
分析服务
分析服务

联系地址

山东省济南市章丘区文博路2号

齐鲁师范学院 genelibs生信实验室

山东省济南市高新区舜华路750号

大学科技园北区F座4单元2楼

电话: 0531-88819269

微信公众号

关注微信订阅号,实时查看信息,关注医学生物学动态。


商务邮箱

E-mail: [email protected]