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.

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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