Mitochondrial impairment and mTORC1 signalling exhaustion define NK Cell dysfunction progression in melanoma

Eimear Mylod1, Jack Behan1, Dina Baier1

  • 1School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, Ireland.

Insights

Natural killer (NK) cells in melanoma patients show progressive dysfunction as cancer advances. Early-stage intervention targeting NK cell metabolism may improve immunotherapy effectiveness.

Area of Science:

  • Immunology
  • Cancer Biology
  • Metabolic Research

Background:

  • Cutaneous melanoma is a metastatic cancer with limited treatment options.
  • Immune checkpoint inhibitors (ICI) benefit only about 50% of patients.
  • Natural killer (NK) cells are crucial for anti-cancer immunity but can become dysfunctional during cancer progression.

Purpose of the Study:

  • To investigate the metabolic and functional changes in circulating NK cells during melanoma progression (Stage III vs. Stage IV).
  • To explore the potential for therapeutic intervention by assessing NK cell metabolic plasticity.

Main Methods:

  • Analysis of circulating NK cells from Stage III and Stage IV melanoma patients.
  • Assessment of mitochondrial mass, morphology, mTORC1 activity, and cytokine responsiveness.
  • Pharmacologic intervention with MHY1485 to restore mTORC1 activity and assess IFN-γ production.

Main Results:

  • Stage III NK cells showed reduced mitochondrial mass, impaired morphology, dysregulated mTORC1, and reduced cytotoxicity.
  • Stage IV NK cells exhibited severe mitochondrial fragmentation, altered mTORC1, and diminished cytokine response.
  • MHY1485 restored IFN-γ in Stage III NK cells but not in Stage IV, indicating stage-dependent metabolic responsiveness.

Conclusions:

  • Circulating NK cells undergo progressive metabolic and functional impairment with advancing melanoma.
  • Therapeutic strategies targeting NK cell metabolism earlier in disease progression may be more effective.
  • Understanding NK cell plasticity is key for developing novel immunotherapies for melanoma.

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