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Published on: October 30, 2013
CD56 on intratumoral NK cells: orchestrating NK cell-mediated anti-tumor effects in bladder cancer
Zaineb Hassouneh1, Onika D V Noel2, Niannian Ji2
1Department of Microbiology, Immunology & Molecular Genetics, UTHSA, United States; Department of Urology, University of Texas Health San Antonio (UTHSA), 7703 Floyd Curl Dr. MC 7845, San Antonio, TX 78229, United States.
Abstract:
Bladder cancer (BCa) exhibits favorable responses to immunotherapy, but a significant percentage of patients fail to show a response owing to an inadequate tumor-immune landscape. We previously showed that NK cells are one of the predominant tumor-infiltrating lymphocytes in BCa and correlate with improved patient survival. However, that link was observed only with CD56bright NK cells while the CD56dim subset exhibited reduced cytotoxicity and higher accumulation in advanced BCa stages. The role of CD56 in NK cell functionality in BCa, however, remains unclear. Using flow cytometry and cytotoxicity assays, we demonstrated a significant decrease in cytotoxicity and activation of NK92 cells against BCa upon CD56 deletion. Further, migration assays and atomic force microscopy showed CD56 deletion impaired NK92 cell migration and adhesion to bladder tumor cells, reducing NK92 cell-mediated apoptosis of BCa cells. Prolonged exposure to bladder tumors led to CD56 loss in NK92 cells, suggesting tumor-induced NK92 cell dysfunction via CD56 reduction, consistent with our previous findings. Confocal microscopy revealed an overlap of CD56 and phosphorylated Pyk2, a critical kinase at the tumor-immune synapse, potentially mediating the downstream cytotoxicity effects. Blocking Pyk2 phosphorylation decreased CD56-mediated NK92 cell activation and reduced NK92 cell-mediated cytotoxicity against BCa. Finally, we showed that CD56 is also expressed by BCa cells and may be a predictive biomarker for NK cell-based immunotherapy, with its shedding indicating a mechanism for NK cell evasion. Our study identifies a novel innate-immune axis in BCa, leading to a better understanding of intratumoral NK cell biology and advancing NK cell-targeted treatments.
Insights
CD56 is crucial for natural killer (NK) cell function in bladder cancer (BCa), mediating cytotoxicity and migration. Loss of CD56 on NK cells impairs anti-tumor activity, suggesting a target for immunotherapy.
Area of Science:
- Immunology
- Oncology
- Cell Biology
Background:
- Bladder cancer (BCa) immunotherapy response varies, often due to poor tumor-immune interactions.
- Natural killer (NK) cells are key tumor-infiltrating lymphocytes in BCa, with CD56bright subsets linked to better survival.
- The specific role of CD56 in NK cell function within the BCa microenvironment is not fully understood.
Purpose of the Study:
- To investigate the function of CD56 in NK cell activity against BCa.
- To explore the mechanism of CD56-mediated NK cell cytotoxicity and migration.
- To identify CD56 as a potential biomarker for NK cell-based immunotherapy in BCa.
Main Methods:
- Flow cytometry and cytotoxicity assays were used to assess NK92 cell function after CD56 deletion.
- Migration and atomic force microscopy evaluated NK92 cell interaction with BCa cells.
- Confocal microscopy and Pyk2 phosphorylation inhibition explored the molecular pathways involved.
Main Results:
- CD56 deletion significantly reduced NK92 cell cytotoxicity, activation, migration, and adhesion to BCa cells.
- Tumor exposure induced CD56 loss on NK92 cells, impairing their function.
- CD56 interacts with phosphorylated Pyk2, a key kinase in the tumor-immune synapse, influencing NK cell cytotoxicity.
- CD56 expression on BCa cells and its shedding represent potential immune evasion mechanisms.
Conclusions:
- CD56 is essential for NK cell-mediated anti-tumor immunity in BCa.
- Tumor-induced CD56 reduction is a mechanism of NK cell dysfunction.
- CD56 and Pyk2 signaling pathway is a novel target for enhancing NK cell-based immunotherapy for BCa.
- CD56 on BCa cells may serve as a predictive biomarker for immunotherapy response.
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