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Published on: May 12, 2019
Loss of functional Fas ligand enhances intestinal tumorigenesis in the Min mouse model
Barbara Fingleton1, Kathy J Carter, Lynn M Matrisian
1Department of Cancer Biology, Vanderbilt University Medical Center, Nashville, Tennessee 37232, USA. Barbara.Fingleton@vanderbilt.edu
Abstract:
Fas ligand (FasL/CD95L), a member of the tumor necrosis factor family, interacts with a specific receptor Fas, ultimately leading to cell death. Tumor expression of FasL has been proposed to aid in immune evasion through a "Fas counterattack" mechanism but has also been described as a proinflammatory factor. Here, we tested the role of FasL in a mouse model of spontaneous tumor development. We used the Min mouse in which multiple benign polyps develop in the intestine due to a mutation in the Apc tumor suppressor gene. Mutant mice deficient in functional FasL, termed gld/gld, were crossed to Min mice to generate tumor-prone animals lacking functional FasL. Comparison of FasL-deficient versus proficient Min mice revealed a significant increase in polyp number in the gld/gld mice. We next assessed immune cell infiltration into adenomas. There was no difference in the number of either lymphocytes or macrophages; however, the number of tumor-infiltrating neutrophils was 3-fold lower in the gld/gld specimens compared with controls. Neutrophil migration in vitro was stimulated by wild-type but not mutant FasL. In a nontumor-bearing colitis model in vivo, neutrophil recruitment to the intestine was also reduced in gld/gld mice. Although the Fas counterattack hypothesis suggests that the absence of FasL would result in increased immune-mediated tumor elimination, the opposite is true in the Min model with lack of functional FasL associated with reduced neutrophil influx and increased tumor development. Thus, the proinflammatory rather than counterattack role of tumor FasL is more relevant.
Insights
Tumor expression of Fas ligand (FasL) promotes inflammation and neutrophil recruitment, paradoxically increasing tumor development in a mouse model. Lack of functional FasL led to more polyps and fewer neutrophils, challenging the immune evasion hypothesis.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Fas ligand (FasL/CD95L) is a TNF-family member involved in cell death and immune responses.
- Tumor FasL has opposing proposed roles: immune evasion via
- Fas counterattack
- or as a proinflammatory factor.
Purpose of the Study:
- To investigate the role of FasL in spontaneous tumor development using a mouse model.
- To determine whether FasL promotes or inhibits tumor growth in this context.
Main Methods:
- Utilized the Min mouse model with spontaneous intestinal polyp development due to Apc mutation.
- Generated FasL-deficient (gld/gld) Min mice for comparison with FasL-proficient controls.
- Assessed tumor number, immune cell infiltration (lymphocytes, macrophages, neutrophils) in tumors, and neutrophil migration in vitro and in vivo.
Main Results:
- FasL-deficient Min mice exhibited a significant increase in intestinal polyp number compared to controls.
- Tumor-infiltrating neutrophils were 3-fold lower in FasL-deficient mice.
- Neutrophil recruitment to the intestine was reduced in FasL-deficient mice in both tumor-bearing and colitis models.
- In vitro neutrophil migration was stimulated by wild-type FasL but not mutant FasL.
Conclusions:
- The absence of functional FasL is associated with increased tumor development in the Min mouse model.
- Tumor FasL's role appears proinflammatory, enhancing neutrophil influx rather than mediating immune evasion.
- The proinflammatory function of tumor FasL is more relevant to tumor development than the proposed Fas counterattack mechanism.
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