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Updated: Oct 17, 2025

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
RAC1 Alterations Induce Acquired Dabrafenib Resistance in Association with Anaplastic Transformation in a Papillary
Rozita Bagheri-Yarmand1, Naifa L Busaidy1, Elena McBeath1
1Department of Endocrine Neoplasia and Hormonal Disorders, University of Texas MD Anderson Cancer Center, Houston, TX 77030, USA.
Abstract:
BRAF-activating mutations are the most frequent driver mutations in papillary thyroid cancer (PTC). Targeted inhibitors such as dabrafenib have been used in advanced BRAF-mutated PTC; however, acquired resistance to the drug is common and little is known about other effectors that may play integral roles in this resistance. In addition, the induction of PTC dedifferentiation into highly aggressive KRAS-driven anaplastic thyroid cancer (ATC) has been reported. We detected a novel RAC1 (P34R) mutation acquired during dabrafenib treatment in a progressive metastatic lesion with ATC phenotype. To identify a potential functional link between this novel mutation and tumor dedifferentiation, we developed a cell line derived from the metastatic lesion and compared its behavior to isogenic cell lines and primary tumor samples. Our data demonstrated that RAC1 mutations induce changes in cell morphology, reorganization of F-actin almost exclusively at the cell cortex, and changes in cell adhesion properties. We also established that RAC1 amplification, with or without mutation, is sufficient to drive cell proliferation and resistance to BRAF inhibition. Further, we identified polyploidy of chromosome 7, which harbors RAC1, in both the metastatic lesion and its derived cell line. Copy number amplification and overexpression of other genes located on this chromosome, such as TWIST1, EGFR, and MET were also detected, which might also lead to dabrafenib resistance. Our study suggests that polyploidy leading to increased expression of specific genes, particularly those located on chromosome 7, should be considered when analyzing aggressive thyroid tumor samples and in further treatments.
Insights
A novel RAC1 mutation and chromosome 7 polyploidy drive resistance to BRAF inhibitors in papillary thyroid cancer, promoting aggressive anaplastic thyroid cancer phenotypes.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- BRAF mutations are common in papillary thyroid cancer (PTC).
- Targeted therapies like dabrafenib are used for advanced BRAF-mutated PTC.
- Acquired resistance and dedifferentiation to anaplastic thyroid cancer (ATC) are significant challenges.
Purpose of the Study:
- Investigate novel mechanisms of acquired resistance to BRAF inhibitors.
- Explore the role of RAC1 mutations and chromosome alterations in PTC dedifferentiation.
- Identify potential therapeutic targets for overcoming drug resistance.
Main Methods:
- Developed a cell line from a metastatic lesion with ATC phenotype.
- Compared the derived cell line with isogenic cell lines and primary tumor samples.
- Analyzed RAC1 mutation status, RAC1 amplification, and chromosome 7 polyploidy.
Main Results:
- Identified a novel RAC1 (P34R) mutation acquired during dabrafenib treatment.
- RAC1 mutations induced changes in cell morphology, F-actin organization, and cell adhesion.
- RAC1 amplification, with or without mutation, conferred resistance to BRAF inhibition.
- Detected chromosome 7 polyploidy, leading to amplification and overexpression of genes like TWIST1, EGFR, and MET.
Conclusions:
- RAC1 alterations and chromosome 7 polyploidy contribute to BRAF inhibitor resistance and PTC dedifferentiation.
- Increased expression of chromosome 7 genes may drive aggressive thyroid cancer phenotypes.
- Targeting polyploidy and associated gene overexpression could offer new therapeutic strategies for advanced thyroid cancer.
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