Related Experiment Video
Updated: Aug 6, 2025

Author Spotlight: Exploring Salidroside's Molecular Mechanisms in Breast Cancer Treatment
Published on: June 9, 2023
RET signaling in breast cancer therapeutic resistance and metastasis
Geoffrey Pecar1,2, Simeng Liu1,3,4, Jagmohan Hooda1,2
1Women's Cancer Research Center, UPMC Hillman Cancer Center and Magee-Womens Research Institute, Pittsburgh, PA, USA.
Abstract:
RET, a single-pass receptor tyrosine kinase encoded on human chromosome 10, is well known to the field of developmental biology for its role in the ontogenesis of the central and enteric nervous systems and the kidney. In adults, RET alterations have been characterized as drivers of non-small cell lung cancer and multiple neuroendocrine neoplasms. In breast cancer, RET signaling networks have been shown to influence diverse functions including tumor development, metastasis, and therapeutic resistance. While RET is known to drive the development and progression of multiple solid tumors, therapeutic agents selectively targeting RET are relatively new, though multiple multi-kinase inhibitors have shown promise as RET inhibitors in the past; further, RET has been historically neglected as a potential therapeutic co-target in endocrine-refractory breast cancers despite mounting evidence for a key pathologic role and repeated description of a bi-directional relationship with the estrogen receptor, the principal driver of most breast tumors. Additionally, the recent discovery of RET enrichment in breast cancer brain metastases suggests a role for RET inhibition specific to advanced disease. This review assesses the status of research on RET in breast cancer and evaluates the therapeutic potential of RET-selective kinase inhibitors across major breast cancer subtypes.
Insights
RET signaling plays a key role in breast cancer development, metastasis, and resistance. This review explores RET-selective inhibitors as a potential therapeutic strategy, particularly for advanced and endocrine-refractory breast cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- RET receptor tyrosine kinase is implicated in development and various cancers.
- RET signaling influences breast cancer progression, metastasis, and therapeutic resistance.
- RET has a bidirectional relationship with estrogen receptor in breast tumors.
Purpose of the Study:
- To review the role of RET in breast cancer.
- To evaluate RET-selective kinase inhibitors as therapeutics for breast cancer subtypes.
- To assess RET's potential as a co-target in endocrine-refractory breast cancer.
Main Methods:
- Literature review on RET's role in breast cancer.
- Analysis of existing and emerging RET-targeted therapies.
- Evaluation of RET alterations in different breast cancer subtypes and metastases.
Main Results:
- RET signaling is a significant driver in breast cancer development and progression.
- RET inhibitors show therapeutic promise, especially in advanced and endocrine-refractory disease.
- RET is enriched in breast cancer brain metastases, suggesting a role in CNS disease.
Conclusions:
- RET is a viable therapeutic target in breast cancer.
- RET-selective inhibitors offer a new avenue for treating various breast cancer subtypes.
- Targeting RET may overcome therapeutic resistance and address metastatic disease.
Related Concept Videos
mTOR Signaling and Cancer Progression
The mTOR pathway or the...
Mitogens and the Cell Cycle
Metastasis
Epithelial-to-Mesenchymal Transition
The epithelial-to-mesenchymal transition or EMT is a developmental process commonly observed in wound healing, embryogenesis, and cancer metastasis. EMT is induced by transforming growth factor-beta (TGF-β) or receptor tyrosine kinase (RTK) ligands, which further...
Interactions Between Signaling Pathways
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
Non-Canonical Wnt Signaling Pathways
Canonical Wnt Signaling Pathway

