PD-L1 and IAPs co-operate to protect tumors from cytotoxic lymphocyte-derived TNF
Conor J Kearney1,2, Najoua Lalaoui3,4, Andrew J Freeman1
1Immune Defence Laboratory, Cancer Immunology Division, The Peter MacCallum Cancer Centre, Melbourne, VIC 3000, Australia.
Abstract:
Smac-mimetics are emerging as promising anti-cancer agents and are being evaluated in clinical trials for a variety of malignancies. Smac-mimetics can induce TNF production from a subset of tumor cells and simultaneously sensitize them to TNF-induced apoptosis. However, TNF derived from other cellular sources, such as cytotoxic lymphocytes (CLs) within the tumor, may also contribute to the anti-tumor activity of SMs. Here, we show that CD8+ T cells and NK cells potently kill tumor cells in the presence of the SM, birinapant. Enhanced CL killing occurred through TNF secretion upon tumor antigen recognition or NK-activating receptor ligation. Importantly, the perforin/granzyme route to CL-mediated tumor cell killing was dispensable for the efficacy of birinapant, emphasizing the importance of the TNF-mediated apoptosis pathway. Time-lapse microscopy revealed that birinapant sensitized tumor cells to apoptosis as bystanders and to membrane-bound TNF delivered to tumor cells within the immunological synapse. Furthermore, PD-L1 expression on tumor cells suppressed antigen-driven TNF production by CD8+ T cells, which could be antagonized through PD-1 blockade. Importantly, the elevated levels of TNF produced upon PD-1 blockade further enhanced tumor cell killing when combined with birinapant. The combined anti-tumor activity of IAP antagonism and PD-1 blockade occurred independently of perforin-mediated tumor cell death. Taken together, we identify CL-derived TNF as a potent effector of birinapant mediated anti-tumor immunity and opportunity for combination therapy through co-inhibition of immune checkpoints.
Insights
Smac-mimetics like birinapant enhance anti-cancer immunity by promoting TNF-driven tumor cell killing via cytotoxic lymphocytes. Combining birinapant with PD-1 blockade further boosts this effect, offering a promising combination therapy strategy.
Area of Science:
- Immunology
- Cancer Biology
- Pharmacology
Background:
- Smac-mimetics (SMs) are investigated as anti-cancer drugs, inducing TNF and sensitizing tumors to TNF-induced apoptosis.
- TNF from cytotoxic lymphocytes (CLs) may also contribute to SM anti-tumor activity.
Purpose of the Study:
- To investigate the role of CL-derived TNF in birinapant's anti-tumor efficacy.
- To explore combination therapy of SMs with immune checkpoint inhibitors.
Main Methods:
- Time-lapse microscopy to observe tumor cell killing.
- Assays to measure TNF production and apoptosis induction.
- In vivo studies combining birinapant with PD-1 blockade.
Main Results:
- Birinapant enhanced CD8+ T cell and NK cell killing of tumor cells via TNF secretion.
- Perforin/granzyme pathways were dispensable; TNF-mediated apoptosis was key.
- PD-1 blockade increased TNF production, enhancing birinapant's efficacy.
- Combined therapy showed potent anti-tumor activity independent of perforin.
Conclusions:
- CL-derived TNF is a critical mediator of birinapant's anti-tumor effects.
- Combining SMs with immune checkpoint inhibitors represents a viable therapeutic strategy.
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