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Published on: November 28, 2019
Tumor cell SYK expression modulates the tumor immune microenvironment composition in human cancer via TNF-α dependent
Adam Aguirre-Ducler1,2, Nicole Gianino1, Franz Villarroel-Espindola1
1Department of Pathology, Yale School of Medicine, New Haven, Connecticut, USA.
Background:
The expression of SYK in cancer cells has been associated with both tumor promoting and tumor suppressive effects. Despite being proposed as anticancer therapeutic target, the possible role of SYK in modulating local adaptive antitumor immune responses remains uncertain. Using detailed analysis of primary human tumors and in vitro models, we reveal the immunomodulatory effect of SYK protein in human solid cancer.
Methods:
We spatially mapped SYK kinase in tumor cells, stromal cells and tumor-infiltrating leukocytes (TILs) in 808 primary non-small cell lung carcinomas (NSCLCs) from two cohorts and in 374 breast carcinomas (BCs) from two independent cohorts. We established the associations of localized SYK with clinicopathologic variables and outcomes. The immunomodulatory role of SYK on tumor cells was assessed using in vitro cytokine stimulation, transcriptomic analysis and selective SYK blockade using a small molecule inhibitor. Functional responses were assessed using cocultures of tumor cells with peripheral blood lymphocytes. T cell responses in baseline and post-treatment biopsies from patients with BC treated with a SYK inhibitor in a phase I clinical trial were also studied.
Results:
Elevated tumor cell or leukocyte SYK expression was associated with high CD4+ and CD8+ TILs and better outcome in both NSCLC and BC. Tumor cell SYK was associated with oncogenic driver mutations in EGFR or KRAS in lung adenocarcinomas and with triple negative phenotype in BC. In cultured tumor cells, SYK was upregulated by TNFα and required for the TNFα-induced proinflammatory responses and T cell activation. SYK blockade after nivolumab in a phase I clinical trial including three patients with advanced triple negative BC reduced TILs and T cell proliferation. Our work establishes the proinflammatory function of tumor cell SYK in lung and breast cancer. SYK signaling in cultured tumor cells is required for T cell activation and SYK blockade limits adaptive antitumor immune responses and tumor rejection in patients with cancer.
Conclusions:
Together, our results establish the immunomodulatory role of SYK expression in human solid tumors. This information could be used to develop novel biomarkers and/or therapeutic strategies.
Insights
Spleen tyrosine kinase (SYK) in cancer cells influences antitumor immunity. SYK blockade can limit immune responses, suggesting SYK as a therapeutic target for enhancing cancer treatment.
Area of Science:
- Oncology
- Immunology
- Molecular Biology
Background:
- Spleen tyrosine kinase (SYK) has dual roles in cancer, potentially promoting or suppressing tumors.
- Its precise role in modulating adaptive antitumor immune responses is unclear, despite its potential as a therapeutic target.
Purpose of the Study:
- To investigate the immunomodulatory effects of SYK in human solid cancers.
- To determine the association of SYK expression with clinicopathologic variables and patient outcomes.
Main Methods:
- Spatial mapping of SYK in tumor cells, stromal cells, and tumor-infiltrating leukocytes (TILs) in non-small cell lung carcinomas (NSCLCs) and breast carcinomas (BCs).
- In vitro assessment of SYK's role in tumor cell cytokine production and T cell activation.
- Analysis of T cell responses in patients treated with a SYK inhibitor.
Main Results:
- Elevated SYK expression in tumor cells or leukocytes correlated with increased CD4+ and CD8+ TILs and improved outcomes in NSCLC and BC.
- SYK upregulation by TNFα in tumor cells was essential for proinflammatory responses and T cell activation.
- SYK blockade in patients with triple-negative breast cancer reduced TILs and T cell proliferation.
Conclusions:
- SYK plays a significant immunomodulatory role in human solid tumors, particularly in lung and breast cancer.
- Tumor cell SYK signaling is crucial for T cell activation, and its blockade can impede adaptive antitumor immunity.
- Findings support SYK as a potential target for novel cancer biomarkers and therapeutic strategies.
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