The Oncometabolite 5'-Deoxy-5'-Methylthioadenosine Blocks Multiple Signaling Pathways of NK Cell Activation

Benedikt Jacobs1, Sebastian Schlögl2, Carolin Dorothea Strobl1

  • 1Department of Internal Medicine 5, Hematology and Oncology, Friedrich Alexander University Erlangen-Nuremberg (FAU), University Hospital Erlangen, Erlangen, Germany.

Frontiers in Immunology
|October 30, 2020
PubMed

Insights

5'-Deoxy-5'-methylthioadenosine (MTA) accumulation due to MTAP deficiency impairs Natural Killer (NK) cell functions. MTA reduces NK cell cytotoxicity and cytokine production by disrupting key signaling pathways, offering a potential therapeutic target in tumors.

Area of Science:

  • Immunology
  • Cancer Biology
  • Metabolic Pathways

Background:

  • Tumor cells evade immune surveillance through various mechanisms, including the secretion of oncometabolites.
  • 5 '-Deoxy-5 '-methylthioadenosine (MTA) phosphorylase (MTAP) deficiency leads to MTA accumulation, impairing immune cell function.

Purpose of the Study:

  • To elucidate the molecular mechanisms underlying MTA-induced dysfunction in Natural Killer (NK) cells.
  • To investigate the impact of MTA on NK cell cytotoxicity, degranulation, and cytokine production.

Main Methods:

  • NK cell assays measuring cytotoxicity, degranulation, and cytokine production in the presence of MTA.
  • Analysis of signaling pathways (PI3K/AKT/S6, MAPK/ERK, NF-κB) downstream of the CD16 receptor.
  • Comparison of MTA's effects in healthy donors with and without NKG2C+ NK cell expansion.

Main Results:

  • MTA dose-dependently reduced NK cell cytotoxicity without affecting viability.
  • MTA inhibited NK cell degranulation and cytokine production upon target cell engagement and antibody stimulation.
  • MTA's immunosuppressive effects were less pronounced in individuals with expanded NKG2C+ NK cells.
  • MTA interfered with PI3K/AKT/S6, MAPK/ERK, and NF-κB signaling pathways crucial for NK cell activation.

Conclusions:

  • MTA impairs NK cell functions, including cytotoxicity and cytokine production, by disrupting signaling pathways activated by NK cell receptors.
  • Targeting MTA metabolism in MTAP-deficient tumors presents a potential strategy to restore NK cell-mediated anti-tumor immunity.

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