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Updated: Aug 19, 2026

Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Clinical and biological features associated with epidermal growth factor receptor gene mutations in lung cancers
Hisayuki Shigematsu1, Li Lin, Takao Takahashi
1Hamon Center for Therapeutic Oncology Research, University of Texas Southwestern Medical Center, Dallas, TX 75390-8593, USA.
Background:
Mutations in the tyrosine kinase (TK) domain of the epidermal growth factor receptor (EGFR) gene in lung cancers are associated with increased sensitivity of these cancers to drugs that inhibit EGFR kinase activity. However, the role of such mutations in the pathogenesis of lung cancers is unclear.
Methods:
We sequenced exons 18-21 of the EGFR TK domain from genomic DNA isolated from 617 non-small-cell lung cancers (NSCLCs) and 524 normal lung tissue samples from the same patients and 36 neuroendocrine lung tumors collected from patients in Japan, Taiwan, the United States, and Australia and from 243 other epithelial cancers. Mutation status was compared with clinicopathologic features and with the presence of mutations in KRAS, a gene in the EGFR signaling pathway that is also frequently mutated in lung cancers. All statistical tests were two sided.
Results:
We detected a total of 134 EGFR TK domain mutations in 130 (21%) of the 617 NSCLCs but not in any of the other carcinomas, nor in nonmalignant lung tissue from the same patients. In NSCLC patients, EGFR TK domain mutations were statistically significantly more frequent in never smokers than ever smokers (51% versus 10%), in adenocarcinomas versus cancer of other histologies (40% versus 3%), in patients of East Asian ethnicity versus other ethnicities (30% versus 8%), and in females versus males (42% versus 14%; all P < .001). EGFR TK domain mutation status was not associated with patient age at diagnosis, clinical stage, the presence of bronchioloalveolar histologic features, or overall survival. The EGFR TK domain mutations we detected were of three common types: in-frame deletions in exon 19, single missense mutations in exon 21, and in-frame duplications/insertions in exon 20. Rare missense mutations were also detected in exons 18, 20, and 21. KRAS gene mutations were present in 50 (8%) of the 617 NSCLCs but not in any tumors with an EGFR TK domain mutation.
Conclusions:
Mutations in either the EGFR TK domain or the KRAS gene can lead to lung cancer pathogenesis. EGFR TK domain mutations are the first molecular change known to occur specifically in never smokers.
Insights
Epidermal growth factor receptor (EGFR) tyrosine kinase (TK) domain mutations are common in non-small-cell lung cancers (NSCLCs), particularly in never-smokers. These mutations are key to lung cancer development and may be the first molecular change in never-smokers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Mutations in the epidermal growth factor receptor (EGFR) tyrosine kinase (TK) domain are linked to drug sensitivity in lung cancers.
- The specific role of these EGFR mutations in lung cancer development remains unclear.
Purpose of the Study:
- To investigate the frequency and characteristics of EGFR TK domain mutations in non-small-cell lung cancers (NSCLCs).
- To explore the association of EGFR mutations with clinicopathologic features and KRAS mutations.
Main Methods:
- Sequencing of EGFR TK domain exons 18-21 in 617 NSCLCs, 524 normal lung tissues, 36 neuroendocrine lung tumors, and 243 other epithelial cancers.
- Comparison of mutation status with clinicopathologic features and KRAS mutations.
Main Results:
- EGFR TK domain mutations were found in 21% of NSCLCs, with higher prevalence in never-smokers (51%), adenocarcinomas (40%), East Asians (30%), and females (42%).
- Mutations were not found in other cancer types or normal lung tissue. KRAS mutations occurred in 8% of NSCLCs and were mutually exclusive with EGFR mutations.
- Common mutations included exon 19 deletions and exon 21 missense mutations.
Conclusions:
- EGFR TK domain or KRAS mutations are implicated in lung cancer pathogenesis.
- EGFR TK domain mutations represent the initial molecular alteration specifically in never-smokers.
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