Therapeutic Implications of Detecting MAPK-Activating Alterations in Cutaneous and Unknown Primary Melanomas

Alexander N Shoushtari1,2, Walid K Chatila3,4, Arshi Arora5

  • 1Department of Medicine, Memorial Sloan Kettering Cancer Center, New York, New York. shoushta@mskcc.org.

Abstract

Insights

Detecting MAPK pathway alterations beyond BRAF V600 in melanoma is clinically relevant for predicting response to PD-1 monotherapy. Genomically matched therapies show promise for refractory melanoma patients.

Area of Science:

  • Oncology
  • Genetics
  • Immunotherapy

Background:

  • Cutaneous and unknown primary melanomas often have MAPK pathway-activating alterations.
  • The clinical significance of identifying MAPK drivers beyond BRAF V600 mutations in the era of checkpoint inhibitors remains unclear.

Purpose of the Study:

  • To investigate the clinical relevance of detecting MAPK pathway drivers beyond BRAF V600 in melanoma patients treated with checkpoint inhibitors.
  • To assess the impact of different MAPK driver groups on time to treatment failure (TTF) with programmed cell death protein 1 (PD-1) monotherapy.

Main Methods:

  • Prospective tumor sequencing of 341-468 genes in melanoma patients.
  • Classification of patients into MAPK driver groups based on alterations in 28 RTK-RAS-MAPK pathway genes.
  • Analysis of TTF using a Cox proportional hazards model, considering driver group, tumor mutational burden, and clinical features.

Main Results:

  • 96% of melanomas harbored oncogenic RTK-RAS-MAPK pathway alterations, with 33% having at least one driver.
  • TTF of PD-1 monotherapy significantly varied by driver group, with worse outcomes for NRAS Q61 and BRAF V600 alterations.
  • Driver group remained a significant independent predictor of TTF for PD-1 monotherapy.
  • Among BRAF V600 wild-type melanoma patients progressing on checkpoint blockade, 30% (8/27) benefited from genomically matched targeted therapy for ≥6 months.

Conclusions:

  • Targeted multigene sequencing effectively detects oncogenic RTK-RAS-MAPK pathway alterations in melanoma.
  • The mechanism of ERK activation, indicated by MAPK driver groups, influences TTF with PD-1 monotherapy.
  • Oncogenic kinase fusions represent a targetable vulnerability in immune checkpoint inhibitor-refractory melanoma.

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