Capacity for compensatory cyclin D2 response confers trametinib resistance in canine mucosal melanoma

Bih-Rong Wei1, Vincenzo Verdi1, Shuling Zhang1

  • 1Laboratory of Cancer Biology and Genetics, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD.

Abstract

Insights

Mucosal melanoma cells can resist MEK inhibitors like trametinib by switching from cyclin D1 to cyclin D2, promoting proliferation. Restoring cyclin D2 levels re-sensitizes resistant cells to trametinib treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • Mucosal melanoma (MM) is an aggressive cancer with limited treatment options due to resistance.
  • Activating mutations in Ras/MAPK and PI3K/AKT/mTOR pathways are common in MM.
  • Canine MM models offer a valuable platform for studying therapeutic resistance in human MM.

Purpose of the Study:

  • Investigate the role of D-type cyclins in mediating resistance to MEK inhibition in MM.
  • Elucidate the compensatory signaling mechanisms that promote therapeutic evasion.
  • Identify potential strategies to overcome drug resistance in MM.

Main Methods:

  • Utilized five MM cell lines with varying sensitivities to trametinib.
  • Analyzed signaling pathways, proliferation, survival, and cell cycle progression.
  • Manipulated cyclin D1 and D2 expression using siRNA and recombinant overexpression.

Main Results:

  • Resistant MM cells upregulated cyclin D2 in response to trametinib, promoting proliferation.
  • Inhibiting the compensatory cyclin D2 upregulation restored trametinib sensitivity.
  • Overexpressing cyclin D2 enhanced survival in otherwise sensitive MM cells.

Conclusions:

  • A compensatory switch from cyclin D1 to cyclin D2 drives MM resistance to MEK inhibitors.
  • Targeting cyclin D2 or related pathways may overcome trametinib resistance.
  • Understanding these resistance mechanisms is crucial for developing effective MM therapies.