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Updated: Aug 21, 2025

Advances in Human Induced Pluripotent Stem Cell-Derived Chimeric Antigen Receptor-Expressing Natural Killer Cells
Published on: February 14, 2025
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.
Abstract:
Cancer immunotherapy targeting the TIGIT/PVR pathway is currently facing challenges. KIR2DL5, a member of the human killer cell, immunoglobulin-like receptor (KIR) family, has recently been identified as another binding partner for PVR. The biology and therapeutic potential of the KIR2DL5/PVR pathway are largely unknown. Here we report that KIR2DL5 was predominantly expressed on human NK cells with mature phenotype and cytolytic function and that it bound to PVR without competition with the other 3 known PVR receptors. The interaction between KIR2DL5 on NK cells and PVR on target cells induced inhibitory synapse formation, whereas new monoclonal antibodies blocking the KIR2DL5-PVR interaction robustly augmented the NK cytotoxicity against PVR+ human tumors. Mechanistically, both intracellular ITIM and ITSM of KIR2DL5 underwent tyrosine phosphorylation after engagement, which was essential for KIR2DL5-mediated NK suppression by recruiting SHP-1 and/or SHP-2. Subsequently, ITIM/SHP-1/SHP-2 and ITSM/SHP-1 downregulated the downstream Vav1/ERK1/2/p90RSK/NF-κB signaling. KIR2DL5+ immune cells infiltrated in various types of PVR+ human cancers. Markedly, the KIR2DL5 blockade reduced tumor growth and improved overall survival across multiple NK cell-based humanized tumor models. Thus, our results revealed functional mechanisms of KIR2DL5-mediated NK cell immune evasion, demonstrated blockade of the KIR2DL5/PVR axis as a therapy for human cancers, and provided an underlying mechanism for the clinical failure of anti-TIGIT therapies.
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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