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HER3: Toward the Prognostic Significance, Therapeutic Potential, Current Challenges, and Future Therapeutics in
1Department of Medicine, University of California, San Francisco, CA 94158, USA.
Abstract:
Human epidermal growth factor receptor 3 (HER3) is the only family member of the EGRF/HER family of receptor tyrosine kinases that lacks an active kinase domain (KD), which makes it an obligate binding partner with other receptors for its oncogenic role. When HER3 is activated in a ligand-dependent (NRG1/HRG) or independent manner, it can bind to other receptors (the most potent binding partner is HER2) to regulate many biological functions (growth, survival, nutrient sensing, metabolic regulation, etc.) through the PI3K-AKT-mTOR pathway. HER3 has been found to promote tumorigenesis, tumor growth, and drug resistance in different cancer types, especially breast and non-small cell lung cancer. Given its ubiquitous expression across different solid tumors and role in oncogenesis and drug resistance, there has been a long effort to target HER3. As HER3 cannot be targeted through its KD with small-molecule kinase inhibitors via the conventional method, pharmaceutical companies have used various other approaches, including blocking either the ligand-binding domain or extracellular domain for dimerization with other receptors. The development of treatment options with anti-HER3 monoclonal antibodies, bispecific antibodies, and different combination therapies showed limited clinical efficiency for various reasons. Recent reports showed that the extracellular domain of HER3 is not required for its binding with other receptors, which raises doubt about the efforts and applicability of the development of the HER3-antibodies for treatment. Whereas HER3-directed antibody-drug conjugates showed potentiality for treatment, these drugs are still under clinical trial. The currently understood model for dimerization-induced signaling remains incomplete due to the absence of the crystal structure of HER3 signaling complexes, and many lines of evidence suggest that HER family signaling involves more than the interaction of two members. This review article will significantly expand our knowledge of HER3 signaling and shed light on developing a new generation of drugs that have fewer side effects than the current treatment regimen for these patients.
Insights
Human Epidermal Growth Factor Receptor 3 (HER3) lacks kinase activity, necessitating partnerships for oncogenic roles. Targeting HER3, crucial in cancers like breast and lung, faces challenges, prompting research into novel antibody-drug conjugates and combination therapies.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Human Epidermal Growth Factor Receptor 3 (HER3) is a non-kinase receptor tyrosine kinase.
- HER3 lacks intrinsic kinase activity, functioning as an obligate partner with other HER family members, notably HER2.
- Dysregulated HER3 signaling drives tumorigenesis, proliferation, and drug resistance in various cancers, including breast and non-small cell lung cancer.
Purpose of the Study:
- To review the multifaceted role of HER3 in cancer development and progression.
- To critically evaluate current therapeutic strategies targeting HER3.
- To highlight emerging therapeutic approaches and future directions for HER3-targeted therapies.
Main Methods:
- Literature review of preclinical and clinical studies on HER3 signaling and therapeutics.
- Analysis of the structural and functional aspects of HER3 dimerization and downstream signaling pathways.
- Evaluation of the efficacy and limitations of various HER3-targeting modalities.
Main Results:
- HER3's oncogenic function is mediated through heterodimerization with other HER receptors, activating pathways like PI3K-AKT-mTOR.
- Conventional small-molecule inhibitors are ineffective against HER3 due to its lack of kinase activity.
- Monoclonal antibodies and bispecific antibodies targeting HER3 have shown limited clinical efficacy, with recent findings questioning the necessity of the extracellular domain for receptor binding.
Conclusions:
- HER3 remains a critical therapeutic target in oncology despite challenges in drug development.
- HER3-directed antibody-drug conjugates show promise and are under clinical investigation.
- Further research into HER3 signaling complexes and novel therapeutic strategies is essential for developing more effective and less toxic cancer treatments.
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