PD-1 interactome in osteosarcoma: identification of a novel PD-1/AXL interaction conserved between humans and dogs

Katarzyna Dziubek1, Jakub Faktor1, Kiran Bharat Lokhande2,3

  • 1International Centre for Cancer Vaccine Science, University of Gdansk, Gdansk, Poland.

Insights

Programmed cell death protein 1 (PD-1) interacts with tyrosine kinase receptor AXL in osteosarcoma cells. This PD-1/AXL interaction is conserved in dogs, suggesting a potential target for novel cancer immunotherapies.

Area of Science:

  • Immunology and Cancer Biology
  • Molecular and Cellular Biology
  • Proteomics and Structural Biology

Background:

  • Immune checkpoint inhibitors targeting PD-1/PD-L1 have transformed cancer therapy, but osteosarcoma remains challenging.
  • The role of PD-1 in cancer cells, beyond immune cells, is not fully understood, particularly its protein interactions.
  • Investigating PD-1's interactome in cancer cells may reveal new therapeutic targets.

Purpose of the Study:

  • To investigate the expression and protein-protein interactions of PD-1 in human osteosarcoma cells.
  • To characterize the molecular interaction between PD-1 and the tyrosine kinase receptor AXL.
  • To validate the PD-1/AXL interaction in canine osteosarcoma as a translational model.

Main Methods:

  • Western blotting, flow cytometry, and immunofluorescence for PD-1 expression and localization.
  • High-throughput proteomics (pull-down assay, mass spectrometry) to identify PD-1 interacting proteins.
  • Immunoblotting, proximity ligation assay (PLA), molecular dynamics (MD) simulations, and inhibitor studies for PD-1/AXL interaction.
  • Analysis of PD-1 and AXL expression and interaction in canine osteosarcoma cell lines.

Main Results:

  • PD-1 is expressed in human osteosarcoma cells, both intracellularly and on the cell surface.
  • AXL was identified as a novel interacting protein of PD-1 in osteosarcoma cells.
  • Molecular dynamics simulations revealed strong binding affinities between PD-1 and AXL, particularly involving intracellular domains.
  • The PD-1/AXL interaction was confirmed in canine osteosarcoma cells, with conserved interacting residues across species.
  • Bemcentinib, an AXL inhibitor, reduced but did not abolish PD-1/AXL binding affinity.

Conclusions:

  • The PD-1/AXL interaction represents a novel molecular pathway in osteosarcoma.
  • The conserved nature of this interaction across human and canine osteosarcoma highlights its biological significance.
  • Understanding the PD-1/AXL interaction provides a foundation for developing new immunotherapeutic strategies for osteosarcoma.