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CD95 ligand-expressing tumors are rejected in anti-tumor TCR transgenic perforin knockout mice
C K Behrens1, F H Igney, B Arnold
1Tumor Immunology Program, German Cancer Research Center, Heidelberg, Germany.
Abstract:
CD95 (APO-/Fas) ligand (CD95L) is a member of the TNF family predominantly expressed by activated T and NK cells but also by tumors of diverse cellular origin. CD95L trimerizes surface CD95 expressed by target cells that subsequently undergo apoptosis. The role of the CD95/CD95L system in the down-regulation of an immune response (activation-induced cell death) is established. However, it is so far unclear why tumors express CD95L. To investigate whether tumors use the CD95L to down-regulate an anti-tumor immune response, we established a transgenic (tg) mouse model consisting of 1) apoptosis-resistant tumor cells, designated LKC-CD95L, which express functional CD95L and the model tumor Ag K(b); and 2) perforin knockout (PKO) anti-K(b) TCR tg mice. L1210-Fas antisense expressing K(b), crmA, and CD95L (LKC-CD95L) killed CD95(+) unrelated tumor targets and Con A-activated splenocytes from anti-K(b) TCR tg PKO mice by a CD95L-dependent mechanism in vitro. However, we could not detect any cytotoxic activity against anti-tumor (anti-K(b)) T cells in vivo. We also observed reduced growth of LKC-CD95L in nude mice and rapid rejection in anti-K(b) TCR tg PKO mice. Because the tumor cells are resistant to CD95L-, TNF-alpha-, and TNF-related apoptosis-inducing ligand-induced apoptosis and the mice used are perforin-deficient, the involvement of these four cytotoxicity mechanisms in tumor rejection can be excluded. The histological examination of tumors grown in nude mice showed infiltration of LKC-CD95L tumors by neutrophils, whereas L1210-Fas antisense expressing K(b) and crmA (LKC) tumor tissue was neutrophil-free. Chemotaxis experiments revealed that CD95L has no direct neutrophil-attractive activity. Therefore, we conclude that LKC-CD95L cells used an indirect mechanism to attract neutrophils that may cause tumor rejection.
Insights
Tumors expressing CD95 ligand (CD95L) may indirectly attract neutrophils, potentially leading to tumor rejection. This study investigated the role of CD95L in tumor immunity using a transgenic mouse model.
Area of Science:
- Immunology
- Cancer Biology
- Molecular Biology
Background:
- The CD95/CD95 Ligand (CD95L) system mediates apoptosis and regulates immune responses.
- Tumors express CD95L, but its role in anti-tumor immunity is unclear.
- Tumor cells can be engineered for apoptosis resistance and expression of specific antigens.
Purpose of the Study:
- To investigate if tumors utilize CD95L to suppress anti-tumor immune responses.
- To explore the mechanism by which CD95L-expressing tumors interact with the immune system.
- To establish a transgenic mouse model for studying CD95L function in tumor immunity.
Main Methods:
- Generation of apoptosis-resistant tumor cells (LKC-CD95L) expressing CD95L and a model tumor antigen (K(b)).
- Utilized perforin knockout (PKO) anti-K(b) TCR transgenic mice.
- In vitro assays assessed CD95L-dependent cytotoxicity; in vivo studies monitored tumor growth and immune cell infiltration.
Main Results:
- LKC-CD95L cells exhibited CD95L-dependent killing of unrelated targets and splenocytes in vitro.
- No direct cytotoxic activity against anti-tumor T cells was observed in vivo.
- Tumors showed reduced growth in nude mice and rapid rejection in PKO mice, with neutrophil infiltration observed in LKC-CD95L tumors.
- CD95L did not directly attract neutrophils, suggesting an indirect mechanism.
Conclusions:
- Tumor-expressed CD95L does not directly mediate anti-tumor T cell cytotoxicity.
- Tumor cells expressing CD95L may employ an indirect mechanism to recruit neutrophils, contributing to tumor rejection.
- The CD95/CD95L system's role in tumor immunity is complex and warrants further investigation.