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Author Spotlight: Replicating Human Osteosarcoma Progression in Immunodeficient Mice for Cancer Study
Published on: March 22, 2024
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.
Abstract:
The PD-1/PDL-1 immune checkpoint inhibitors revolutionized cancer treatment, yet osteosarcoma remains a therapeutic challenge. In some types of cancer, PD-1 receptor is not solely expressed by immune cells but also by cancer cells, acting either as a tumor suppressor or promoter. While well-characterized in immune cells, little is known about the role and interactome of the PD-1 pathway in cancer. We investigated PD-1 expression in human osteosarcoma cells and studied PD-1 protein-protein interactions in cancer. Using U2OS cells as a model, we confirmed PD-1 expression by western blotting and characterized its intracellular as well as surface localization through flow cytometry and immunofluorescence. High-throughput analysis of PD-1 interacting proteins was performed using a pull-down assay and quantitative mass spectrometry proteomic analysis. For validation and molecular modeling, we selected tyrosine kinase receptor AXL-a recently reported cancer therapeutic target. We confirmed the PD-1/AXL interaction by immunoblotting and proximity ligation assay (PLA). Molecular dynamics (MD) simulations uncovered binding affinities and domain-specific interactions between extracellular (ECD) and intracellular (ICD) domains of PD-1 and AXL. ECD complexes exhibited strong binding affinity, further increasing for the ICD complexes, emphasizing the role of ICDs in the interaction. PD-1 phosphorylation mutant variants (Y223F and Y248F) did not disrupt the interaction but displayed varying strengths and binding affinities. Using bemcentinib, a selective AXL inhibitor, we observed reduced binding affinity in the PD-1/AXL interaction, although it was not abrogated. To facilitate the future translation of this finding into clinical application, we sought to validate the interaction in canine osteosarcoma. Osteosarcoma spontaneously occurs at significantly higher frequency in dogs and shares close genetic and pathological similarities with humans. We confirmed endogenous expression of PD-1 and AXL in canine osteosarcoma cells, with PD-1/AXL interaction preserved in the dog cells. Also, the interacting residues remain conserved in both species, indicating an important biological function of the interaction. Our study shed light on the molecular basis of the PD-1/AXL interaction with the implication for its conservation across species, providing a foundation for future research aimed at improving immunotherapy strategies and developing novel therapeutic approaches.
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.
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