CBP/p300 acetyltransferases regulate the expression of NKG2D ligands on tumor cells
M Sauer1, M Schuldner1, N Hoffmann1
1Department I of Internal Medicine, University Hospital of Cologne, Cologne, Germany.
Abstract:
Tumor surveillance of natural killer (NK) cells is mediated by the cytotoxicity receptor natural-killer group 2 member D (NKG2D). Ligands for NKG2D are generally not expressed on healthy cells, but induced on the surface of malignant cells. To date, NKG2D ligand (NKG2D-L) induction was mainly described to depend on the activation of the DNA damage response, although the molecular mechanisms that regulate NKG2D-L expression remain largely unknown. Here, we show that the acetyltransferases CBP (CREB-binding protein) and p300 play a crucial role in the regulation of NKG2D-L on tumor cells. Loss of CBP/p300 decreased the basal cell surface expression of human ligands and reduced the upregulation of MICA/B and ULBP2 in response to histone deacetylase inhibitors or DNA damage. Furthermore, CBP/P300 deficiency abrogated the sensitivity of stressed cells to NK cell-mediated killing. CBP/p300 were also identified as major regulators of mouse NKG2D ligand RAE-1 in vitro and in vivo using the Eμ-Myc lymphoma model. Mechanistically, we observed an enhanced activation of the CBP/p300 binding transcription factor CREB (cAMP response element-binding protein) correlating to the NKG2D-L upregulation. Moreover, increased binding of CREB and CBP/p300 to NKG2D-L promoters and elevated histone acetylation were detectable. This study provides strong evidence for a major role of CBP and p300 in orchestrating NKG2D-L induction and consequently immunosurveillance of tumors in mice and humans. These findings might help to develop novel immunotherapeutic approaches against cancer.
Insights
The study reveals that CBP and p300 acetyltransferases are key regulators of NKG2D ligands, crucial for natural killer (NK) cell tumor surveillance. Their absence impairs NK cell killing of cancer cells, suggesting new therapeutic targets.
Area of Science:
- Immunology
- Molecular Biology
- Cancer Research
Background:
- Natural killer (NK) cell tumor surveillance relies on the NKG2D receptor and its ligands (NKG2D-L).
- NKG2D-L expression is induced on malignant cells, often linked to DNA damage response, but regulatory mechanisms are unclear.
Purpose of the Study:
- To investigate the role of acetyltransferases CBP (CREB-binding protein) and p300 in regulating NKG2D-L expression and NK cell-mediated tumor cell killing.
Main Methods:
- Studied human and mouse NKG2D-L expression in tumor cells with and without CBP/p300.
- Utilized histone deacetylase inhibitors and DNA damage to induce NKG2D-L.
- Assessed NK cell cytotoxicity against tumor cells.
- Analyzed transcription factor CREB (cAMP response element-binding protein) activation and histone acetylation at NKG2D-L promoters.
Main Results:
- Loss of CBP/p300 reduced basal and induced NKG2D-L expression (MICA/B, ULBP2, RAE-1).
- CBP/p300 deficiency decreased tumor cell sensitivity to NK cell killing.
- CBP/p300 regulate NKG2D-L via CREB activation, promoter binding, and histone acetylation.
Conclusions:
- CBP and p300 are critical regulators of NKG2D-L induction in both human and mouse tumor cells.
- These findings highlight CBP/p300 as potential targets for enhancing cancer immunotherapy by boosting NK cell activity.
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