Upregulation of MAPK Negative Feedback Regulators and RET in Mutant ALK Neuroblastoma: Implications for Targeted

Irina Lambertz1, Candy Kumps1, Shana Claeys1

  • 1Center for Medical Genetics, Ghent University Hospital, Ghent, Belgium.

Abstract

Insights

Activating ALK mutations drive neuroblastoma, but resistance emerges. This study maps ALK signaling, revealing MAPK feedback loops and RET activation, suggesting new combination therapies for this pediatric cancer.

Area of Science:

  • Oncology
  • Genetics
  • Molecular Biology

Background:

  • Activating ALK mutations occur in ~10% of neuroblastomas, making them targets for ALK inhibitors.
  • Resistance to ALK inhibitors is a significant challenge in treating neuroblastoma.
  • Understanding ALK-driven signaling is crucial for developing effective combination therapies.

Purpose of the Study:

  • To comprehensively map oncogenic ALK-driven signaling pathways in neuroblastoma.
  • To identify novel therapeutic targets and fragile nodes for combination therapies.
  • To understand the mechanisms of resistance to ALK inhibitors.

Main Methods:

  • Transcriptome profiling of neuroblastoma cell lines with specific ALK mutations (F1174L, R1275Q), amplification, or wild-type ALK.
  • Pharmacologic inhibition of ALK using four distinct compounds.
  • Cross-species genomic analyses comparing human and mouse neuroblastoma models.

Main Results:

  • Established and validated a 77-gene ALK signature in neuroblastoma samples and cell lines.
  • Confirmed known signaling branches (PI3K/AKT/mTOR, MAPK/ERK, MYC/MYCN) and identified MAPK negative feedback regulators.
  • Discovered upregulation of RET signaling and cholinergic lineage markers driven by mutant ALK.

Conclusions:

  • Mutant ALK signaling in neuroblastoma is complex, involving MAPK negative feedback loops.
  • ALK-induced RET signaling presents a novel therapeutic opportunity.
  • ALK-RET targeted combination therapies may overcome resistance and improve treatment outcomes.

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