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Identification of somatic mutations in EGFR/KRAS/ALK-negative lung adenocarcinoma in never-smokers.

Authors :
Jin Woo Ahn
Han Sang Kim
Jung-Ki Yoon
Hoon Jang
Soo Min Han
Sungho Eun
Hyo Sup Shim
Hyun-Jung Kim
Dae Joon Kim
Jin Gu Lee
Chang Young Lee
Mi Kyung Bae
Kyung Young Chung
Ji Ye Jung
Eun Young Kim
Se Kyu Kim
Joon Chang
Hye Ryun Kim
Joo Hang Kim
Min Goo Lee
Source :
Genome Medicine. 2014, Vol. 6 Issue 2, p1-24. 24p.
Publication Year :
2014

Abstract

Background Lung adenocarcinoma is a highly heterogeneous disease with various etiologies, prognoses, and responses to therapy. Although genome-scale characterization of lung adenocarcinoma has been performed, a comprehensive somatic mutation analysis of EGFR/KRAS/ALKnegative lung adenocarcinoma in never-smokers has not been conducted. Methods We analyzed whole exome sequencing data from 16 EGFR/KRAS/ALK-negative lung adenocarcinomas and additional 54 tumors in two expansion cohort sets. Candidate loci were validated by target capture and Sanger sequencing. Gene set analysis was performed using Ingenuity Pathway Analysis (IPA). Results We identified 27 genes potentially implicated in the pathogenesis of lung adenocarcinoma. These included targetable genes involved in PI3K/mTOR signaling (TSC1, PIK3CA, AKT2) and receptor tyrosine kinase signaling (ERBB4) and genes not previously highlighted in lung adenocarcinomas, such as SETD2 and PBRM1 (chromatin remodeling), CHEK2 and CDC27 (cell cycle), CUL3 and SOD2 (oxidative stress), and CSMD3 and TFG (immune response). In the expansion cohort (N = 70), TP53 was the most frequently altered gene (11%), followed by SETD2 (6%), CSMD3 (6%), ERBB2 (6%), and CDH10 (4%). In pathway analysis, the majority of altered genes were involved in cell cycle/DNA repair (P < 0.001) and cAMPdependent protein kinase signaling (P < 0.001). Conclusions The genomic makeup of EGFR/KRAS/ALK-negative lung adenocarcinomas in never-smokers is remarkably diverse. Genes involved in cell cycle regulation/DNA repair are implicated in tumorigenesis and represent potential therapeutic targets. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1756994X
Volume :
6
Issue :
2
Database :
Academic Search Index
Journal :
Genome Medicine
Publication Type :
Academic Journal
Accession number :
94935622
Full Text :
https://doi.org/10.1186/gm535