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Concurrent SOS1 and MEK suppression inhibits signaling and growth of NF1-null melanoma

  • Michelangelo Marasco
  • , Dinesh Kumar
  • , Tessa Seale
  • , Santiago Garcia Borrego
  • , Esther Kaplun
  • , Ilinca Aricescu
  • , Soren Cole
  • , Besnik Qeriqi
  • , Juan Qiu
  • , Xiaoping Chen
  • , Amber Bahr
  • , Deborah Fidele
  • , Marco H. Hofmann
  • , Daniel Gerlach
  • , Fabio Savarese
  • , Taha Merghoub
  • , Jedd D. Wolchok
  • , Zhan Yao
  • , Elisa de Stanchina
  • , David Solit
  • Sandra Misale, Neal Rosen

Research output: Contribution to journalArticlepeer-review

Abstract

Neurofibromin (NF1) is a negative regulator of RAS signaling, frequently mutated in cancer. NF1-mutant melanoma is a highly malignant tumor for which targeted therapies are lacking. Here, we use biochemical and pharmacological assays on patient-derived models and isogenic cell lines to identify potential pharmacologic targets, revealing that NF1-null melanomas are dependent on RAS activation and that MEK inhibition relieves ERK-dependent negative feedback, increasing RAS signaling. MEK inhibition with avutometinib abrogates the adaptive rebound in ERK signaling, but the antitumor effects are limited. However, concurrent inhibition of MEK and SOS1 abrogates ERK activation, induces cell death, and suppresses tumor growth. In contrast to the NF1-deficient setting, concurrent SOS1 and SOS2 depletion is required to completely inhibit RAS signaling in NF1 wild-type cells. In sum, our data provide a mechanistic rationale for enhancing the therapeutic efficacy of MEK inhibitors by exploiting the lower residual SOS activity in NF1-null tumor cells.

Original languageEnglish (US)
Article number101818
JournalCell Reports Medicine
Volume5
Issue number11
DOIs
StatePublished - Nov 19 2024

Keywords

  • MEK inhibition
  • NF1
  • SOS1 inhibition
  • combination therapy
  • melanoma

ASJC Scopus subject areas

  • General Medicine
  • General Biochemistry, Genetics and Molecular Biology

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