PLA2 driven lipid signaling drives ARMS tumorigenic cell properties

Amogh Gupta1, Bharathi Ramanathan1, Dipanwita Das1

  • 1Department of Physiology, NUS Center for Cancer Research Translation Research Programme, Yong Loo Lin School of Medicine, Healthy Longevity, National University of Singapore, Singapore, 117593, Singapore.

Abstract

Insights

Targeting Phospholipase A2 (PLA2) in pediatric alveolar rhabdomyosarcoma (ARMS) hinders tumor-initiating cells (TICs) by disrupting lipid metabolism. This approach shows promise for reducing ARMS recurrence and metastasis.

Area of Science:

  • Oncology
  • Molecular Biology
  • Cancer Metabolism

Background:

  • Alveolar rhabdomyosarcoma (ARMS) has poor relapse-free survival despite chemotherapy advances.
  • Tumor-initiating cells (TICs) drive ARMS recurrence, but their characteristics are poorly understood.
  • Lipid metabolism is increasingly recognized for its role in cancer stemness.

Purpose of the Study:

  • To investigate the transcriptomic and metabolic profiles of TICs in ARMS.
  • To explore the role of lipid metabolism in ARMS TIC maintenance and function.
  • To assess the therapeutic potential of targeting lipid metabolism in ARMS.

Main Methods:

  • Transcriptomic and lipidomic profiling of ARMS tumorsphere and adherent cells.
  • RNA-Sequencing and mass spectrometry to identify differentially expressed genes and lipids.
  • In vitro and in vivo functional assays to evaluate the impact of Phospholipase A2 (PLA2) inhibition.

Main Results:

  • ARMS TICs exhibit upregulated lipid metabolism, particularly PLA2 enzyme subtypes, and suppressed glycolysis.
  • Enrichment of linoleic acid-derived lipids and increased PLA2 activity were observed in TICs.
  • PLA2 inhibition reduced ARMS TIC self-renewal, motility, and tumor growth, effects rescued by linoleic acid.

Conclusions:

  • PLA2-mediated lipid remodeling supports ARMS TICs via linoleic acid signaling.
  • PLA2 inhibition represents a promising therapeutic strategy for targeting the ARMS stem-like compartment.
  • Lipid remodeling is a critical metabolic adaptation in ARMS TICs, independent of conventional energy pathways.

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