Determinant roles of dendritic cell-expressed Notch Delta-like and Jagged ligands on anti-tumor T cell immunity
Autor: | Portia L. Thomas, Mikhail M. Dikov, Longzhu Piao, Parvathi Ranganathan, Anneliese Antonucci, Maria Teresa P. de Aquino, David P. Carbone, Anwari Akhter, Roman V. Uzhachenko, Michael J. Koenig, Rajeswara Rao Arasada, I S Chekneva, Jason V. Evans, Nicholas E. Long, Pierre P. Massion, Thomas J. Magliery, Anna Valujskikh, Elena E. Tchekneva, Mounika U.L. Goruganthu, Anil Shanker |
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Jazyk: | angličtina |
Rok vydání: | 2019 |
Předmět: |
0301 basic medicine
JAG2 Cancer Research JAG1 Regulatory T-cells medicine.medical_treatment Immunology Notch signaling pathway Cancer immunotherapy Dendritic cells lcsh:RC254-282 03 medical and health sciences 0302 clinical medicine Immune system medicine Lung carcinoma Immunology and Allergy Cytotoxic T cell Delta-like notch ligands Pharmacology Chemistry Effector Dendritic cell lcsh:Neoplasms. Tumors. Oncology. Including cancer and carcinogens CD8 T-cells 3. Good health Cell biology 030104 developmental biology Cytokine Oncology 030220 oncology & carcinogenesis Notch receptors Heart allograft rejection Molecular Medicine Jagged Tumor infiltrating immune cells Research Article |
Zdroj: | Journal for ImmunoTherapy of Cancer, Vol 7, Iss 1, Pp 1-17 (2019) Journal for Immunotherapy of Cancer |
ISSN: | 2051-1426 |
DOI: | 10.1186/s40425-019-0566-4 |
Popis: | Background Notch intercellular communication instructs tissue-specific T-cell development and function. In this study, we explored the roles of dendritic cell (DC)-expressed Notch ligands in the regulation of T-cell effector function. Methods We generated mice with CD11c lineage-specific deletion of Notch Delta-like ligand (Dll)1 and Jagged (Jag)2. Using these genetically-ablated mice and engineered pharmacological Notch ligand constructs, the roles of various Delta-like and Jagged ligands in the regulation of T-cell-mediated immunity were investigated. We assessed tumor growth, mouse survival, cytokine production, immunophenotyping of myeloid and lymphoid populations infiltrating the tumors, expression of checkpoint molecules and T-cell function in the experimental settings of murine lung and pancreatic tumors and cardiac allograft rejection. Correlative studies were also performed for the expression of NOTCH ligands, NOTCH receptors and PD-1 on various subsets of myeloid and lymphoid cells in tumor-infiltrating immune cells analyzed from primary human lung cancers. Results Mice with CD11c lineage-specific deletion of Notch ligand gene Dll1, but not Jag2, exhibited accelerated growth of lung and pancreatic tumors concomitant with decreased antigen-specific CD8+T-cell functions and effector-memory (Tem) differentiation. Increased IL-4 but decreased IFN-γ production and elevated populations of T-regulatory and myeloid-derived suppressor cells were observed in Dll1-ablated mice. Multivalent clustered DLL1-triggered Notch signaling overcame DC Dll1 deficiency and improved anti-tumor T-cell responses, whereas the pharmacological interference by monomeric soluble DLL1 construct suppressed the rejection of mouse tumors and cardiac allograft. Moreover, monomeric soluble JAG1 treatment reduced T-regulatory cells and improved anti-tumor immune responses by decreasing the expression of PD-1 on CD8+Tem cells. A significant correlation was observed between DC-expressed Jagged and Delta-like ligands with Tem-expressed PD-1 and Notch receptors, respectively, in human lung tumor-infiltrates. Conclusion Our data show the importance of specific expression of Notch ligands on DCs in the regulation of T-cell effector function. Thus, strategies incorporating selectively engineered Notch ligands could provide a novel approach of therapeutics for modulating immunity in various immunosuppressive conditions including cancer. Electronic supplementary material The online version of this article (10.1186/s40425-019-0566-4) contains supplementary material, which is available to authorized users. |
Databáze: | OpenAIRE |
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