作者
Jianxin Shi, Xing Hua, Bin Zhu, Sarangan Ravichandran, Mingyi Wang, Cu Nguyen, Seth A Brodie, Alessandro Palleschi, Marco Alloisio, Gianluca Pariscenti, Kristine Jones, Weiyin Zhou, Aaron J Bouk, Joseph Boland, Belynda Hicks, Adam Risch, Hunter Bennett, Brian T Luke, Lei Song, Jubao Duan, Pengyuan Liu, Takashi Kohno, Qingrong Chen, Daoud Meerzaman, Crystal Marconett, Ite Laird-Offringa, Ian Mills, Neil E Caporaso, Mitchell H Gail, Angela C Pesatori, Dario Consonni, Pier Alberto Bertazzi, Stephen J Chanock, Maria Teresa Landi
发表日期
2016/12/6
期刊
PLoS medicine
卷号
13
期号
12
页码范围
e1002162
出版商
Public Library of Science
简介
Background
Lung adenocarcinoma (LUAD) is the most common histologic subtype of lung cancer and has a high risk of distant metastasis at every disease stage. We aimed to characterize the genomic landscape of LUAD and identify mutation signatures associated with tumor progression.
Methods and Findings
We performed an integrative genomic analysis, incorporating whole exome sequencing (WES), determination of DNA copy number and DNA methylation, and transcriptome sequencing for 101 LUAD samples from the Environment And Genetics in Lung cancer Etiology (EAGLE) study. We detected driver genes by testing whether the nonsynonymous mutation rate was significantly higher than the background mutation rate and replicated our findings in public datasets with 724 samples. We performed subclonality analysis for mutations based on mutant allele data and copy number alteration data. We also tested the association between mutation signatures and clinical outcomes, including distant metastasis, survival, and tumor grade. We identified and replicated two novel candidate driver genes, POU class 4 homeobox 2 (POU4F2) (mutated in 9 [8.9%] samples) and ZKSCAN1 (mutated in 6 [5.9%] samples), and characterized their major deleterious mutations. ZKSCAN1 was part of a mutually exclusive gene set that included the RTK/RAS/RAF pathway genes BRAF, EGFR, KRAS, MET, and NF1, indicating an important driver role for this gene. Moreover, we observed strong associations between methylation in specific genomic regions and somatic mutation patterns. In the tumor evolution analysis, four driver genes had a significantly …
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