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Updated: Feb 3, 2026

Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
DNA Sequencing of Small Bowel Adenocarcinomas Identifies Targetable Recurrent Mutations in the ERBB2 Signaling
Liana Adam1, F Anthony San Lucas2, Richard Fowler2
1Department of Gastrointestinal Medical Oncology, The University of Texas MD Anderson Cancer Center, Houston, Texas.
Purpose:
Little is known about the genetic alterations characteristic of small bowel adenocarcinoma (SBA). Our purpose was to identify targetable alterations and develop experimental models of this disease.Experimental Design: Whole-exome sequencing (WES) was completed on 17 SBA patient samples and targeted-exome sequencing (TES) on 27 samples to confirm relevant driver mutations. Two SBA models with ERBB2 kinase activating mutations were tested for sensitivity to anti-ERBB2 agents in vivo and in vitro. Biochemical changes were measured by reverse-phase protein arrays.
Results:
WES identified somatic mutations in 4 canonical pathways (WNT, ERBB2, STAT3, and chromatin remodeling), which were validated in the TES cohort. Although APC mutations were present in only 23% of samples, additional WNT-related alterations were seen in 12%. ERBB2 mutations and amplifications were present in 23% of samples. Patients with alterations in the ERBB2 signaling cascade (64%) demonstrated worse clinical outcomes (median survival 70.3 months vs. 109 months; log-rank HR = 2.4, P = 0.03). Two ERBB2-mutated (V842I and Y803H) cell lines were generated from SBA patient samples. Both demonstrated high sensitivity to ERBB2 inhibitor dacomitinib (IC50 < 2.5 nmol/L). In xenografts derived from these samples, treatment with dacomitinib reduced tumor growth by 39% and 59%, respectively, whereas it had no effect in an SBA wild-type ERBB2 model.
Conclusions:
The in vitro and in vivo models of SBA developed here provide a valuable resource for understanding targetable mutations in this disease. Our findings support clinical efforts to target activating ERBB2 mutations in patients with SBA that harbor these alterations.
Insights
Genetic alterations in small bowel adenocarcinoma (SBA) were identified, revealing ERBB2 mutations as a targetable vulnerability. New experimental models demonstrate sensitivity to ERBB2 inhibitors, supporting clinical trials for SBA patients with these specific mutations.
Area of Science:
- Genomics and Molecular Biology
- Oncology
- Translational Research
Background:
- Small bowel adenocarcinoma (SBA) is a rare cancer with poorly understood genetic underpinnings.
- Identifying targetable genetic alterations is crucial for developing effective therapies for SBA.
Purpose of the Study:
- To identify actionable genetic alterations in small bowel adenocarcinoma (SBA).
- To develop and characterize preclinical experimental models of SBA.
Main Methods:
- Whole-exome sequencing (WES) and targeted-exome sequencing (TES) were performed on SBA patient samples.
- Experimental models (cell lines and xenografts) with specific ERBB2 mutations were generated.
- In vitro and in vivo sensitivity to ERBB2 inhibitors was assessed.
- Biochemical changes were analyzed using reverse-phase protein arrays.
Main Results:
- Somatic mutations were identified in WNT, ERBB2, STAT3, and chromatin remodeling pathways.
- ERBB2 mutations and amplifications were found in 23% of SBA cases, associated with worse outcomes.
- ERBB2-mutated SBA models showed high sensitivity to the ERBB2 inhibitor dacomitinib both in vitro and in vivo.
- Dacomitinib significantly reduced tumor growth in xenografts with ERBB2 mutations but not in wild-type models.
Conclusions:
- The developed experimental models of SBA are valuable for studying targetable mutations.
- Activating ERBB2 mutations represent a promising therapeutic target in a subset of SBA patients.
- Findings support clinical investigation of ERBB2-targeted therapies for SBA.
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