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.

Cancers
|October 13, 2021
PubMed

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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