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Effects on tumor development and metastatic dissemination by the NKG2D lymphocyte receptor expressed on cancer cells
A El-Gazzar1, X Cai1, R S Reeves1
1Clinical Research Division, Fred Hutchinson Cancer Research Center, Seattle, WA, USA.
Abstract:
The stimulatory NKG2D lymphocyte receptor together with its tumor-associated ligands enable the immune system to recognize and destroy cancer cells. However, with dynamic changes unfolding, cancers exploit NKG2D and its ligands for immune evasion and suppression. Recent findings have added yet another functional dimension, wherein cancer cells themselves co-opt NKG2D for their own benefit to complement the presence of its ligands for self-stimulation of parameters of tumorigenesis. Those findings are here extended to in vivo tumorigenicity testing by employing orthotopic xenotransplant breast cancer models in mice. Using human cancer lines with ectopic NKG2D expression and RNA interference (RNAi)-mediated protein depletion among other controls, we show that NKG2D self-stimulation has tumor-promoting capacity. NKG2D signals had no notable effects on cancer cell proliferation and survival but acted at the level of angiogenesis, thus promoting tumor growth, tumor cell intravasation and dissemination. NKG2D-mediated effects on tumor initiation may represent another factor in the observed overall enhancement of tumor development. Altogether, these results may have an impact on immunotherapy approaches, which currently do not account for such NKG2D effects in cancer patients and thus could be misdirected as underlying assumptions are incomplete.
Insights
Cancer cells exploit the NKG2D receptor for self-stimulation, promoting tumor growth, angiogenesis, and spread. This finding impacts current cancer immunotherapies by revealing a previously unaccounted mechanism of tumor development.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- The NKG2D receptor and its ligands are crucial for immune surveillance against cancer.
- Cancer cells can evade immune detection by manipulating NKG2D signaling.
- Emerging evidence suggests cancer cells utilize NKG2D for their own benefit.
Purpose of the Study:
- To investigate the role of NKG2D self-stimulation in tumor development and progression in vivo.
- To determine the specific mechanisms by which NKG2D signaling influences tumorigenesis.
Main Methods:
- Orthotopic xenotransplant breast cancer models in mice.
- Utilized human cancer cell lines with engineered NKG2D expression (ectopic expression) and depletion (RNA interference).
- Assessed tumor growth, angiogenesis, intravasation, and dissemination.
Main Results:
- NKG2D self-stimulation demonstrated tumor-promoting capacity in vivo.
- NKG2D signaling did not significantly affect cancer cell proliferation or survival.
- NKG2D primarily promoted tumor growth by enhancing angiogenesis, tumor cell intravasation, and dissemination.
Conclusions:
- Cancer cells can co-opt NKG2D for self-stimulation, driving tumor progression.
- NKG2D-mediated angiogenesis and metastasis are key mechanisms of tumor promotion.
- Current immunotherapies may need re-evaluation to account for NKG2D's dual role in cancer.
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