Molecular Pathways and Mechanisms of HER2 in Cancer Therapy
Kanwal P S Raghav1, Mark M Moasser2
1Department of Gastrointestinal Medical Oncology, The University of Texas MD Anderson Cancer Center (MDACC), Houston, Texas.
Abstract:
The oncogene ERBB2 encoding the receptor tyrosine-protein kinase erbB-2 (HER2) is frequently overexpressed or amplified and occasionally mutated in a variety of human cancers. The early discovery of this oncogene, its established oncogenic relevance in diverse cancers, its substantial expression on the surface of cancer cells, and its druggable catalytic activity have made it one of the most pursued targets in the history of cancer drug development. Initiatives targeting HER2 provided the early stimulus for several transformational pharmaceutical technologies, including mAbs, tyrosine kinase inhibitors, antibody-drug conjugates, and others. The seismic impact of these efforts has been felt in treatment of many cancers, including breast, gastroesophageal, lung, colorectal, and others. This impact continues to broaden with increasing indications on the horizon and a plethora of novel agents in development. However, implementation of these therapeutic strategies has been complex. The clinical translation of every one of these classes of agents has been notable for underperformance or overperformance characteristics that have informed new lines of research providing deeper insights into the mechanistic complexities and unrealized opportunities provided by this molecular target. Despite all the successes to date, the preponderance of scientific evidence indicates that the full potential of HER2 as a target for cancer therapeutics is far greater than currently realized, and numerous lines of investigation are ongoing to deepen and broaden the scope of impact of HER2 as a signaling, homing, or immunologic target. In this review, we explore the existing data and evolving paradigms surrounding this remarkable target for cancer therapy.
Insights
The human epidermal growth factor receptor 2 (HER2) is a key cancer target. Ongoing research aims to unlock its full therapeutic potential across various cancers.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The ERBB2 oncogene encodes HER2, a receptor tyrosine kinase frequently altered in human cancers.
- HER2's overexpression, amplification, and mutations, along with its surface expression and druggable activity, make it a prime cancer therapeutic target.
- Targeting HER2 has driven innovation in cancer drug development, including monoclonal antibodies and antibody-drug conjugates.
Approach:
- This review explores existing data and evolving paradigms of HER2 as a cancer therapeutic target.
- It examines the impact of HER2-targeted therapies on various cancers like breast, gastroesophageal, and lung cancer.
- The review delves into the mechanistic complexities and unrealized opportunities associated with HER2.
Key Points:
- HER2-targeted therapies have significantly impacted cancer treatment, with ongoing expansion into new indications.
- Clinical translation of HER2-targeting agents reveals complexities, including under- and overperformance, driving further research.
- Despite successes, the full potential of HER2 as a therapeutic target remains largely untapped.
Conclusions:
- HER2 remains a critical target for cancer therapy, with substantial unrealized potential.
- Continued investigation into HER2's roles in signaling, homing, and immunology will broaden its therapeutic scope.
- This review synthesizes current knowledge and future directions for HER2-targeted cancer treatments.
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