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Granzymes are essential for natural killer cell-mediated and perf-facilitated tumor control
Julián Pardo1, Sandra Balkow, Alberto Anel
1Departamento de Bioquímica y Biología Molecular y Celular, Facultad de Ciencias, Universidad de Zaragoza, Zaragoza, Spain.
Abstract:
Studies with perforin-deficient mice firmly established perforin as a key element in cytotoxic T cell (CTL) / natural killer (NK) cell-mediated tumor control but did not reveal the role of granzyme (gzm) A and B. A contribution of gzm in these processes was indicated by earlier in vitro experiments employing purified effector molecules demonstrated that tumor cell apoptosis and death only occurred in the presence of both, perf and gzm. However, recent work using mice deficient in either gzmA, gzmB or both gzm suggested that only perf but neither of the two gzm are critical for tumor surveillance by CTL or NK cells. In light of the conflicting results we have re-investigated this issue by analyzing the potential of mice deficient in one or more component(s) of the exocytosis pathway to control NK-sensitive syngeneic MHC class I-defective RMA-S tumor cells in vivo. Our results show that in contrast to wild-type mice, mice deficient for both gzm exhibit an uncontrolled tumor growth with a time kinetic similar to that of perforin-deficient mice. Together with the finding that a defect of mice in either gzmA or gzmB alone also leads to an increased susceptibility to tumor growth, at least to a certain extent when compared to wild-type mice, the data clearly indicate that a concerted action of perforin and the two gzm is mandatory for optimal NK cell-mediated tumor control in vivo. Most notably, the in vivo potential of the respective NK cell populations was only reflected by their nucleolytic, but not their cytolytic activities in vitro.
Insights
Perforin and granzymes (gzm) A and B are crucial for natural killer (NK) cell-mediated tumor control. Mice lacking both granzymes showed uncontrolled tumor growth, highlighting their essential role alongside perforin in anti-tumor immunity.
Area of Science:
- Immunology
- Cancer Biology
- Cellular Cytotoxicity
Background:
- Perforin is essential for cytotoxic T lymphocyte (CTL) and natural killer (NK) cell tumor control.
- The roles of granzyme (gzm) A and B in vivo were previously unclear, with conflicting data from in vitro and in vivo studies.
Purpose of the Study:
- To re-evaluate the necessity of perforin and granzymes in NK cell-mediated tumor surveillance.
- To investigate the combined function of perforin and granzymes in controlling tumor growth in vivo.
Main Methods:
- Utilized genetically modified mice deficient in perforin, granzyme A, granzyme B, or combinations thereof.
- Assessed the control of NK-sensitive, MHC class I-defective RMA-S tumor cells in vivo.
- Compared tumor growth kinetics in wild-type versus deficient mouse models.
Main Results:
- Mice deficient in both granzymes exhibited uncontrolled tumor growth, similar to perforin-deficient mice.
- Mice deficient in either granzyme A or B alone showed increased susceptibility to tumor growth.
- Concerted action of perforin and granzymes is mandatory for optimal NK cell-mediated tumor control in vivo.
Conclusions:
- Perforin and granzymes act synergistically to mediate effective NK cell tumor surveillance.
- Granzyme activity, specifically nucleolytic function, is critical for in vivo anti-tumor responses.
- NK cell's in vitro cytolytic activity does not fully predict their in vivo tumor control efficacy.