Structural principles of peptide-centric chimeric antigen receptor recognition guide therapeutic expansion
Yi Sun1,2, Tyler J Florio1,2, Sagar Gupta1,2
1Center for Computational and Genomic Medicine and Department of Pathology and Laboratory Medicine, Children's Hospital of Philadelphia, Philadelphia, PA, USA.
Abstract:
Peptide-centric chimeric antigen receptors (PC-CARs) recognize oncoprotein epitopes displayed by cell-surface human leukocyte antigens (HLAs) and offer a promising strategy for targeted cancer therapy. We have previously developed a PC-CAR targeting a neuroblastoma-associated PHOX2B peptide, leading to robust tumor cell lysis restricted by two common HLA allotypes. Here, we determine the 2.1-angstrom crystal structure of the PC-CAR-PHOX2B-HLA-A*24:02-β2m complex, which reveals the basis for antigen-specific recognition through interactions with CAR complementarity-determining regions (CDRs). This PC-CAR adopts a diagonal docking mode, where interactions with both conserved and polymorphic HLA framework residues permit recognition of multiple HLA allotypes from the A9 serological cross-reactive group, covering a combined global population frequency of up to 46.7%. Biochemical binding assays, molecular dynamics simulations, and structural and functional analyses demonstrate that high-affinity PC-CAR recognition of cross-reactive pHLAs necessitates the presentation of a specific peptide backbone, where subtle structural adaptations of the peptide are critical for high-affinity complex formation, and CAR T cell killing. Our results provide a molecular blueprint for engineering CARs with optimal recognition of tumor-associated antigens in the context of different HLAs, while minimizing cross-reactivity with self-epitopes.
Insights
Peptide-centric chimeric antigen receptors (PC-CARs) targeting neuroblastoma show promise. Structural analysis reveals how PC-CARs recognize tumor antigens across diverse human leukocyte antigen (HLA) types for effective cancer therapy.
Area of Science:
- Immunology
- Structural Biology
- Oncology
Background:
- Peptide-centric chimeric antigen receptors (PC-CARs) target oncoprotein epitopes presented by human leukocyte antigens (HLAs) for cancer therapy.
- Previous work established a PC-CAR targeting a neuroblastoma-associated PHOX2B peptide, effective against specific HLA allotypes.
Purpose of the Study:
- To determine the crystal structure of a PC-CAR targeting PHOX2B peptide bound to HLA-A*24:02.
- To elucidate the molecular basis of antigen-specific recognition and HLA allotype cross-reactivity.
Main Methods:
- X-ray crystallography (2.1 Å resolution) of the PC-CAR-PHOX2B-HLA-A*24:02-β2m complex.
- Biochemical binding assays.
- Molecular dynamics simulations.
- Structural and functional analyses.
Main Results:
- The crystal structure revealed a diagonal docking mode of the PC-CAR.
- Interactions with conserved and polymorphic HLA residues enable recognition of multiple A9 group HLA allotypes (up to 46.7% global frequency).
- High-affinity recognition requires specific peptide backbone presentation, with subtle peptide structural changes critical for binding and CAR T cell activity.
Conclusions:
- The study provides a molecular blueprint for engineering PC-CARs with broad HLA compatibility.
- This approach optimizes recognition of tumor antigens while minimizing off-target reactions with self-epitopes.
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