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Updated: Feb 8, 2026

Spontaneous Murine Model of Anaplastic Thyroid Cancer
Published on: February 3, 2023
Hgf/Met activation mediates resistance to BRAF inhibition in murine anaplastic thyroid cancers
Jeffrey A Knauf1,2, Kathleen A Luckett1, Kuen-Yuan Chen1
1Human Oncology and Pathogenesis Program.
Abstract:
Anaplastic thyroid carcinomas (ATCs) have a high prevalence of BRAF and TP53 mutations. A trial of vemurafenib in nonmelanoma BRAFV600E-mutant cancers showed significant, although short-lived, responses in ATCs, indicating that these virulent tumors remain addicted to BRAF despite their high mutation burden. To explore the mechanisms mediating acquired resistance to BRAF blockade, we generated mice with thyroid-specific deletion of p53 and dox-dependent expression of BRAFV600E, 50% of which developed ATCs after dox treatment. Upon dox withdrawal there was complete regression in all mice, although recurrences were later detected in 85% of animals. The relapsed tumors had elevated MAPK transcriptional output, and retained responses to the MEK/RAF inhibitor CH5126766 in vivo and in vitro. Whole-exome sequencing identified recurrent focal amplifications of chromosome 6, with a minimal region of overlap that included Met. Met-amplified recurrences overexpressed the receptor as well as its ligand Hgf. Growth, signaling, and viability of Met-amplified tumor cells were suppressed in vitro and in vivo by the Met kinase inhibitors PF-04217903 and crizotinib, whereas primary ATCs and Met-diploid relapses were resistant. Hence, recurrences are the rule after BRAF suppression in murine ATCs, most commonly due to activation of HGF/MET signaling, which generates exquisite dependency to MET kinase inhibitors.
Insights
Anaplastic thyroid carcinoma (ATC) recurrences after BRAF blockade are common. These aggressive tumors often develop Met amplifications, leading to HGF/MET pathway activation and sensitivity to MET kinase inhibitors.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Anaplastic thyroid carcinomas (ATCs) frequently harbor BRAF and TP53 mutations.
- BRAF inhibitors show transient efficacy in ATCs, suggesting a continued dependence on BRAF signaling.
Purpose of the Study:
- To investigate mechanisms of acquired resistance to BRAF blockade in ATCs.
- To identify therapeutic vulnerabilities in recurrent ATCs.
Main Methods:
- Generated a murine model of ATC with conditional BRAFV600E expression and p53 deletion.
- Administered BRAF inhibitor and monitored tumor regression and recurrence.
- Utilized whole-exome sequencing to identify genetic alterations in relapsed tumors.
- Assessed sensitivity to targeted therapies in vitro and in vivo.
Main Results:
- BRAF inhibition led to complete tumor regression, followed by recurrence in 85% of mice.
- Recurrent tumors exhibited elevated MAPK signaling and retained sensitivity to MEK/RAF inhibitors.
- Whole-exome sequencing revealed recurrent amplifications of chromosome 6, including the Met gene.
- Met-amplified tumors overexpressed MET and its ligand HGF, and were sensitive to MET kinase inhibitors.
Conclusions:
- BRAF suppression in murine ATCs frequently leads to acquired resistance.
- HGF/MET pathway activation, driven by Met amplification, is a common mechanism of recurrence.
- Targeting MET signaling offers a therapeutic strategy for BRAF-inhibitor-resistant ATCs.
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