Targeted lapatinib anti-HER2/ErbB2 therapy resistance in breast cancer: opportunities to overcome a difficult problem
Reema Wahdan-Alaswad1, Bolin Liu2, Ann D Thor1
1Department of Pathology, University of Colorado Anschutz Medical Campus, Aurora CO 80014, USA.
Abstract:
Approximately 20% of invasive breast cancers have upregulation/gene amplification of the oncogene human epidermal growth factor receptor-2 (HER2/ErbB2). Of these, some also express steroid receptors (the so-called Luminal B subtype), whereas others do not (the HER2 subtype). HER2 abnormal breast cancers are associated with a worse prognosis, chemotherapy resistance, and sensitivity to selected anti-HER2 targeted therapeutics. Transcriptional data from over 3000 invasive breast cancers suggest that this approach is overly simplistic; rather, the upregulation of HER2 expression resulting from gene amplification is a driver event that causes major transcriptional changes involving numerous genes and pathways in breast cancer cells. Most notably, this includes a shift from estrogenic dependence to regulatory controls driven by other nuclear receptors, particularly the androgen receptor. We discuss members of the HER receptor tyrosine kinase family, heterodimer formation, and downstream signaling, with a focus on HER2 associated pathology in breast carcinogenesis. The development and application of anti-HER2 drugs, including selected clinical trials, are discussed. In light of the many excellent reviews in the clinical literature, our emphasis is on recently developed and successful strategies to overcome targeted therapy resistance. These include combining anti-HER2 agents with programmed cell death-1 ligand or cyclin-dependent kinase 4/6 inhibitors, targeting crosstalk between HER2 and other nuclear receptors, lipid/cholesterol synthesis to inhibit receptor tyrosine kinase activation, and metformin, a broadly inhibitory drug. We seek to facilitate a better understanding of new approaches to overcome anti-HER2 drug resistance and encourage exploration of two other therapeutic interventions that may be clinically useful for HER+ invasive breast cancer patients.
Insights
Human epidermal growth factor receptor-2 (HER2) gene amplification in breast cancer drives significant transcriptional changes, altering cellular dependence from estrogen to other nuclear receptors like the androgen receptor. New strategies combat HER2 targeted therapy resistance.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Approximately 20% of invasive breast cancers exhibit human epidermal growth factor receptor-2 (HER2/ErbB2) gene amplification.
- HER2-amplified breast cancers are linked to poorer prognosis, chemotherapy resistance, and sensitivity to anti-HER2 therapies.
- Current classification (Luminal B vs. HER2 subtypes) may oversimplify the complex transcriptional landscape driven by HER2 amplification.
Purpose of the Study:
- To explore the profound transcriptional alterations in breast cancer cells caused by HER2 gene amplification.
- To discuss the role of HER2 receptor tyrosine kinase family signaling in breast carcinogenesis.
- To review novel strategies for overcoming resistance to anti-HER2 targeted therapies.
Main Methods:
- Analysis of transcriptional data from over 3000 invasive breast cancers.
- Review of HER receptor tyrosine kinase family signaling pathways and HER2-associated pathology.
- Discussion of clinical trials and emerging therapeutic interventions.
Main Results:
- HER2 amplification induces major transcriptional shifts, including a move from estrogen dependence to androgen receptor regulation.
- Understanding HER2 signaling, heterodimer formation, and downstream pathways is crucial.
- New therapeutic combinations show promise in overcoming targeted therapy resistance.
Conclusions:
- HER2 amplification is a pivotal event with widespread transcriptional consequences in breast cancer.
- Targeting crosstalk between HER2 and other nuclear receptors, lipid synthesis, and utilizing agents like metformin are promising approaches.
- Further research into novel therapeutic interventions is encouraged for HER2-positive invasive breast cancer patients.
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