AXL is a novel ERK5/KLF4 target in MEK inhibitor-treated melanoma

Rupesh Paudel1, Simon Goller1, Stefanie Schwarz1

  • 1Department of Dermatology, Venereology and Allergology, University Hospital Würzburg, Josef-Schneider-Str. 2, Würzburg 97080, Germany.

Neoplasia (New York, N.Y.)
|March 31, 2026
PubMed

Insights

Melanoma therapy resistance involves the ERK5/KLF4/AXL pathway. This novel signaling axis drives resistance and metastasis in NRAS-mutant melanoma, offering new therapeutic targets beyond BRAF and MEK inhibitors.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Research

Background:

  • BRAF/MEK inhibitors (BRAFi/MEKi) are key melanoma treatments but face resistance.
  • NRAS-mutant melanoma patients often lack BRAF targets and respond poorly to MEKi.
  • Compensatory MEK5/ERK5 pathway activation is implicated in MEKi resistance.

Purpose of the Study:

  • Investigate the role of Krüppel-like factors (KLF2/KLF4) in MEKi resistance in NRAS-mutant melanoma.
  • Identify novel signaling pathways driving MEKi resistance and metastasis.
  • Explore potential therapeutic targets to overcome treatment resistance.

Main Methods:

  • Utilized RNA interference and CRISPR/Cas9 gene editing.
  • Performed RNA sequencing and functional assays.
  • Analyzed melanoma cell migration and invasion.

Main Results:

  • KLF2 and KLF4 were not essential for ERK5-mediated resistance.
  • Identified AXL receptor tyrosine kinase as a critical ERK5/KLF4 target during MEKi resistance.
  • KLF4 and AXL depletion reduced melanoma cell migration and invasion.

Conclusions:

  • Discovered a novel ERK5/KLF4/AXL signaling axis driving MEKi resistance and metastasis in NRAS-mutant melanoma.
  • This axis represents a potential therapeutic target to improve MAPK-directed therapies.
  • Findings may also enhance the efficacy of immunotherapies in melanoma.

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