Blockade of the immunosuppressive KIR2DL5/PVR pathway elicits potent human NK cell-mediated antitumor immunity

Xiaoxin Ren1, Mou Peng1, Peng Xing1

  • 1Department of Microbiology and Immunology and.

Insights

The KIR2DL5/PVR pathway inhibits natural killer (NK) cell cancer immunity. Blocking this interaction enhances NK cell activity against tumors, offering a new cancer immunotherapy strategy.

Area of Science:

  • Immunology
  • Cancer Biology
  • Molecular Medicine

Background:

  • Cancer immunotherapy targeting the TIGIT/PVR pathway faces challenges.
  • KIR2DL5, a human killer cell immunoglobulin-like receptor (KIR), binds PVR, but its role is unclear.

Purpose of the Study:

  • To investigate the biological function and therapeutic potential of the KIR2DL5/PVR pathway in cancer immunity.

Main Methods:

  • Characterized KIR2DL5 expression on NK cells and its binding to PVR.
  • Developed monoclonal antibodies to block KIR2DL5-PVR interaction.
  • Analyzed downstream signaling pathways (ITIM, ITSM, SHP-1/2, Vav1/ERK1/2/NF-κB).
  • Evaluated the efficacy of KIR2DL5 blockade in humanized tumor models.

Main Results:

  • KIR2DL5 is expressed on mature, cytolytic human NK cells and binds PVR independently of other receptors.
  • KIR2DL5/PVR interaction induces NK cell inhibition via tyrosine phosphorylation and downstream signaling suppression.
  • Blocking KIR2DL5-PVR interaction enhances NK cell cytotoxicity against PVR+ tumors.
  • KIR2DL5 blockade reduced tumor growth and improved survival in preclinical models.

Conclusions:

  • KIR2DL5 mediates NK cell immune evasion by inhibiting cytotoxicity.
  • Blocking the KIR2DL5/PVR axis is a promising cancer immunotherapy strategy.
  • This pathway may explain clinical failures of anti-TIGIT therapies.

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