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Updated: Jan 22, 2026

Next Generation Sequencing for the Detection of Actionable Mutations in Solid and Liquid Tumors
Published on: September 20, 2016
Emergence of ERBB2 Mutation as a Biomarker and an Actionable Target in Solid Cancers
Janakiraman Subramanian1,2, Archana Katta3, Ashiq Masood4,2
1Division of Oncology, Saint Luke's Cancer Institute, Kansas City, Missouri, USA jsubramanian@saint-lukes.org ickrishna@gmail.com.
Abstract:
The oncogenic role ERBB2 amplification is well established in breast and gastric cancers. This has led to the development of a well-known portfolio of monoclonal antibodies and kinase inhibitors targeting the ERBB2 kinase. More recently, activating mutations in the ERBB2 gene have been increasingly reported in multiple solid cancers and were shown to play an oncogenic role similar to that of ERBB2 amplification. Thus, ERBB2 mutations define a distinct molecular subtype of solid tumors and serve as actionable targets. However, efforts to target ERBB2 mutation has met with limited clinical success, possibly because of their low frequency, inadequate understanding of the biological activity of these mutations, and difficulty in separating the drivers from the passenger mutations. Given the current impetus to deliver molecularly targeted treatments for cancer, there is an important need to understand the therapeutic potential of ERBB2 mutations. Here we review the distribution of ERBB2 mutations in different tumor types, their potential as a novel biomarker that defines new subsets in many cancers, and current data on preclinical and clinical efforts to target these mutations. IMPLICATIONS FOR PRACTICE: A current trend in oncology is to identify novel genomic drivers of solid tumors and developing precision treatments that target them. ERBB2 amplification is an established therapeutic target in breast and gastric cancers, but efforts to translate this finding to other solid tumors with ERBB2 amplification have not been effective. Recently the focus has turned to targeting activating ERBB2 mutations. The year 2018 marked an important milestone in establishing ERBB2 mutation as an important actionable target in multiple cancer types. There have been several recent preclinical and clinical studies evaluating ERBB2 mutation as a therapeutic target with varying success. With increasing access to next-generation sequencing technologies in the clinic, oncologists are frequently identifying activating ERBB2 mutations in patients with cancer. There is a significant need both from the clinician and bench scientist perspectives to understand the current state of affairs for ERBB2 mutations.
Insights
Activating ERBB2 mutations are increasingly found in solid tumors and represent actionable targets. Understanding their therapeutic potential is crucial for developing new precision cancer treatments.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- ERBB2 amplification is a known driver in breast and gastric cancers, with targeted therapies available.
- Activating ERBB2 mutations are emerging as oncogenic drivers in various solid tumors, similar to amplification.
- These mutations define distinct molecular subtypes and represent potential therapeutic targets.
Purpose of the Study:
- To review the distribution of ERBB2 mutations across different cancer types.
- To explore the potential of ERBB2 mutations as biomarkers for new patient subsets.
- To summarize current preclinical and clinical efforts targeting ERBB2 mutations.
Main Methods:
- Literature review of studies on ERBB2 mutations in solid tumors.
- Analysis of preclinical data on therapeutic strategies targeting ERBB2 mutations.
- Review of clinical trial outcomes for ERBB2-mutated cancers.
Main Results:
- ERBB2 mutations are identified in diverse solid tumors, suggesting broader applicability of targeted therapies.
- Challenges in targeting ERBB2 mutations include low frequency and distinguishing driver from passenger mutations.
- Recent studies show varying success in targeting ERBB2 mutations, highlighting the need for further research.
Conclusions:
- ERBB2 mutations are actionable targets and potential biomarkers in multiple solid tumors.
- Further research is needed to overcome challenges and optimize therapeutic strategies for ERBB2-mutated cancers.
- Understanding ERBB2 mutations is essential for advancing precision oncology.
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