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Tumor cell surface ligands for natural cytotoxicity receptors (NCRs)

Molecular classification
Other (tumor-induced self-molecules, B7 family homologs with Ig-like V and C domains for B7-H6; diverse unrelated proteins and glycans for others)
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Overview

Tumor cell surface ligands for natural cytotoxicity receptors (NCRs) refer to a diverse set of molecules, primarily B7-H6, expressed selectively on transformed cells that engage activating NCRs (NKp30, NKp44, NKp46) on natural killer (NK) cells to trigger tumor cell lysis and cytokine production. B7-H6, a B7 family homolog with V-like and C-like Ig domains, binds NKp30 in an antibody-like manner using CDR-like loops, forming a 1:1 complex that spans ~100 Å and promotes NK cell immune synapse formation. This interaction lacks expression on healthy cells, acting as an "induced self" signal of cellular stress or transformation, distinct from MHC-related ligands for other NK receptors like NKG2D. In cancer, these ligands contribute to NK surveillance against diverse tumors including leukemias, carcinomas, and neuroblastomas, though their full spectrum (including BAT3, viral pp65) suggests multifaceted NK activation. Therapeutically, no drugs directly target these ligands yet, but structural insights support developing NKp30 agonists or bispecifics to boost antitumor immunity, potentially synergizing with NKG2D pathways while risking excessive inflammation.

Other names
B7-H6BAT3pp65 (CMV tegument protein)heparan sulfate/heparin moleculesPfEMP-1 (Plasmodium falciparum erythrocyte membrane protein-1)
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Mechanism of action

None (no drugs; hypothetical: soluble B7-H6 or NKp30 variants to enhance NK cytolytic activity or ADCC against B7-H6+ tumors)

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Biological functions

Immune response (alert innate immunity to tumor transformation by engaging NCRs on NK cells to trigger cytotoxicity and cytokine secretion)Signal transduction (ligand-receptor interaction leading to NK cell activation via ITAM-bearing adapters)
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Disease associations

Cancer (expressed on tumor cells like neuroblastomas, carcinomas, leukemias to induce NK-mediated lysis)Infection (e.g., CMV pp65, Plasmodium PfEMP-1 recognized by NKp30)
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Safety considerations

Potential overactivation of NK cells leading to cytokine release syndrome or autoimmunity if therapeutically agonizedMonomeric nature may limit clustering needed for strong signaling
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Biomarkers

B7-H6 expression on tumor cells (correlates with NKp30-dependent lysis susceptibility)

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