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Elucidating the genomic architecture of Asian EGFR-mutant lung adenocarcinoma through multi-region exome sequencing.

Rahul NaharWeiwei ZhaiTong ZhangAngela TakanoAlexis J KhngYin Yeng LeeXingliang LiuChong Hee LimTina P T KohZaw Win AungTony Kiat Hon LimLavanya VeeravalliJu YuanAudrey S M TeoCheryl X ChanHuay Mei PohIvan M L ChuaAudrey Ann LiewDawn Ping Xi LauXue Lin KwangChee Keong TohWan-Teck LimBing LimWai Leong TamEng-Huat TanAxel Maximilian HillmerDaniel S W Tan
Published in: Nature communications (2018)
EGFR-mutant lung adenocarcinomas (LUAD) display diverse clinical trajectories and are characterized by rapid but short-lived responses to EGFR tyrosine kinase inhibitors (TKIs). Through sequencing of 79 spatially distinct regions from 16 early stage tumors, we show that despite low mutation burdens, EGFR-mutant Asian LUADs unexpectedly exhibit a complex genomic landscape with frequent and early whole-genome doubling, aneuploidy, and high clonal diversity. Multiple truncal alterations, including TP53 mutations and loss of CDKN2A and RB1, converge on cell cycle dysregulation, with late sector-specific high-amplitude amplifications and deletions that potentially beget drug resistant clones. We highlight the association between genomic architecture and clinical phenotypes, such as co-occurring truncal drivers and primary TKI resistance. Through comparative analysis with published smoking-related LUAD, we postulate that the high intra-tumor heterogeneity observed in Asian EGFR-mutant LUAD may be contributed by an early dominant driver, genomic instability, and low background mutation rates.
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