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Comparison of SYK Signaling Networks Reveals the Potential Molecular Determinants of Its Tumor-Promoting and
Marion Buffard1,2, Aurélien Naldi3,4, Gilles Freiss1
1IRCM, Université de Montpellier, ICM, INSERM, F-34298 Montpellier, France.
Abstract:
Spleen tyrosine kinase (SYK) can behave as an oncogene or a tumor suppressor, depending on the cell and tissue type. As pharmacological SYK inhibitors are currently evaluated in clinical trials, it is important to gain more information on the molecular mechanisms underpinning these opposite roles. To this aim, we reconstructed and compared its signaling networks using phosphoproteomic data from breast cancer and Burkitt lymphoma cell lines where SYK behaves as a tumor suppressor and promoter. Bioinformatic analyses allowed for unveiling the main differences in signaling pathways, network topology and signal propagation from SYK to its potential effectors. In breast cancer cells, the SYK target-enriched signaling pathways included intercellular adhesion and Hippo signaling components that are often linked to tumor suppression. In Burkitt lymphoma cells, the SYK target-enriched signaling pathways included molecules that could play a role in SYK pro-oncogenic function in B-cell lymphomas. Several protein interactions were profoundly rewired in the breast cancer network compared with the Burkitt lymphoma network. These data demonstrate that proteomic profiling combined with mathematical network modeling allows untangling complex pathway interplays and revealing difficult to discern interactions among the SYK pathways that positively and negatively affect tumor formation and progression.
Insights
Spleen tyrosine kinase (SYK) has dual roles in cancer. This study reveals distinct SYK signaling networks in breast cancer and Burkitt lymphoma, clarifying its tumor suppressor and oncogenic functions.
Area of Science:
- Oncology
- Molecular Biology
- Bioinformatics
Background:
- Spleen tyrosine kinase (SYK) exhibits context-dependent roles as an oncogene or tumor suppressor.
- Understanding SYK's opposing functions is crucial, especially with SYK inhibitors in clinical trials.
Purpose of the Study:
- To elucidate the molecular mechanisms behind SYK's dual roles in cancer.
- To compare SYK signaling networks in breast cancer (tumor suppressor) and Burkitt lymphoma (oncogene).
Main Methods:
- Phosphoproteomic data analysis from breast cancer and Burkitt lymphoma cell lines.
- Bioinformatic and mathematical network modeling to compare signaling pathways and network topology.
- Identification of SYK's downstream effectors and pathway propagation.
Main Results:
- SYK signaling pathways differ significantly between breast cancer and Burkitt lymphoma.
- In breast cancer, SYK targets include intercellular adhesion and Hippo signaling, associated with tumor suppression.
- In Burkitt lymphoma, SYK targets are linked to its pro-oncogenic function in B-cell lymphomas, with rewiring of protein interactions.
Conclusions:
- Proteomic profiling and network modeling can untangle complex SYK pathway interplays.
- These methods reveal SYK interactions that positively and negatively impact tumor formation and progression.
- The study clarifies SYK's opposing roles in different cancer types, offering insights for therapeutic strategies.
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