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Published on: August 11, 2017
Src mutation induces acquired lapatinib resistance in ERBB2-amplified human gastroesophageal adenocarcinoma models
Yong Sang Hong1, Jihun Kim2, Eirini Pectasides3
1Department of Medical Oncology, Dana-Farber Cancer Institute, Boston, Massachusetts, United States of America; Department of Oncology, Asan Medical Center, University of Ulsan College of Medicine, Seoul, Korea.
Abstract:
ERBB2-directed therapy is now a routine component of therapy for ERBB2-amplified metastatic gastroesophageal adenocarcinomas. However, there is little knowledge of the mechanisms by which these tumors develop acquired resistance to ERBB2 inhibition. To investigate this question we sought to characterize cell line models of ERBB2-amplified gastroesophageal adenocarcinoma with acquired resistance to ERBB2 inhibition. We generated lapatinib-resistant (LR) subclones from an initially lapatinib-sensitive ERBB2-amplified esophageal adenocarcinoma cell line, OE19. We subsequently performed genomic characterization and functional analyses of resistant subclones with acquired lapatinib resistance. We identified a novel, acquired SrcE527K mutation in a subset of LR OE19 subclones. Cells with this mutant allele harbour increased Src phosphorylation. Genetic and pharmacologic inhibition of Src resensitized these subclones to lapatinib. Biochemically, Src mutations could activate both the phosphatidylinositol 3-kinase and mitogen activated protein kinase pathways in the lapatinib-treated LR OE19 cells. Ectopic expression of SrcE527K mutation also was sufficient to induce lapatinib resistance in drug-naïve cells. These results indicate that pathologic activation of Src is a potential mechanism of acquired resistance to ERBB2 inhibition in ERBB2-amplified gastroesophageal cancer. Although Src mutation has not been described in primary tumor samples, we propose that the Src hyperactivation should be investigated in the settings of acquired resistance to ERBB2 inhibition in esophageal and gastric adenocarcinoma.
Insights
Acquired resistance to ERBB2-targeted therapy in gastroesophageal cancer can be driven by a novel SrcE527K mutation. Inhibiting Src reactivated sensitivity to ERBB2 inhibitors, suggesting a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genomics
Background:
- ERBB2-amplified gastroesophageal adenocarcinomas are routinely treated with ERBB2-directed therapies.
- Mechanisms of acquired resistance to ERBB2 inhibition in these cancers remain poorly understood.
Purpose of the Study:
- To characterize cell line models of ERBB2-amplified gastroesophageal adenocarcinoma with acquired resistance to ERBB2 inhibition.
- To identify molecular mechanisms underlying acquired resistance to ERBB2 inhibitors.
Main Methods:
- Generation of lapatinib-resistant (LR) subclones from the OE19 esophageal adenocarcinoma cell line.
- Genomic characterization and functional analyses of resistant subclones.
- Investigating the role of Src activation and its downstream pathways.
Main Results:
- A novel acquired SrcE527K mutation was identified in a subset of lapatinib-resistant OE19 subclones.
- The SrcE527K mutation led to increased Src phosphorylation and conferred lapatinib resistance.
- Inhibition of Src resensitized resistant cells to lapatinib and activated phosphatidylinositol 3-kinase and mitogen-activated protein kinase pathways.
Conclusions:
- Pathologic activation of Src, specifically the SrcE527K mutation, is a potential mechanism of acquired resistance to ERBB2 inhibition in ERBB2-amplified gastroesophageal cancer.
- Src hyperactivation should be investigated as a resistance mechanism in esophageal and gastric adenocarcinoma treated with ERBB2 inhibitors.
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