Regulation of NK cell development, maturation, and antitumor responses by the nuclear receptor NR2F6
Johannes Woelk1, Florian Hornsteiner2, Stephanie Aschauer-Wallner3,4
1Institute of Cell Genetics, Department for Genetics and Pharmacology, Medical University of Innsbruck, Innsbruck, Austria.
Abstract:
Natural killer (NK) cell development and functionality rely on precise regulation by specific transcription factors (TFs). Our study demonstrates that the nuclear orphan receptor NR2F6 represses the expression of the activating receptor NKp46, an established key player in NK cell-mediated cytotoxicity during infection and tumor rejection. Despite normal NK cell development in the bone marrow, germline Nr2f6-deficient mice exhibit impaired terminal maturation of NK cells in the periphery. Short-term NK cell responses to lipopolysaccharide (LPS) activation, independent of NKp46, are subsequently reduced in Nr2f6-deficient mice. Conventional type 1 dendritic cells (cDC1) and macrophage populations are decreased in spleens of Nr2f6-deficient mice, subsequently, IL-15-dependent NK cell priming is limited. Administration of exogenous IL-15 in vitro and as IL-15 complex in vivo can compensate for these deficits, promoting terminal maturation of NK cells in Nr2f6-deficient mice. Subsequent transcriptome analysis reveals significant changes in gene expression profiles of NK cells from IL-15 complex treated Nr2f6-deficient mice, with notable alterations in essential NK genes such as Klrg1, Prdm1, Stat5a, Zeb2, and Prf1. Consequently, Nr2f6-deficient IL-15 complex-treated NK cells raise enhanced effector responses of IFNγ, Perforin, and Granzyme B upon ex vivo activation. Of importance, Nr2f6-deficient mice are protected against MHC-I negative B16-F10 melanoma lung metastasis formation, especially with IL-15 complex treatment, indicating the potential of NR2F6 to affect NKp46-dependent NK cell-mediated tumor surveillance. The therapeutic targeting of NR2F6 may be a promising strategy for boosting NKp46-dependent NK-cell-mediated tumor surveillance and metastasis.
Insights
The nuclear orphan receptor NR2F6 represses NKp46, crucial for natural killer (NK) cell cytotoxicity. NR2F6 deficiency impairs NK cell maturation and anti-tumor immunity, but IL-15 therapy restores function and enhances tumor surveillance.
Area of Science:
- Immunology
- Cell Biology
- Cancer Research
Background:
- Natural killer (NK) cell function is vital for immune responses against infections and tumors.
- Transcription factors precisely regulate NK cell development and activity.
- The nuclear orphan receptor NR2F6's role in NK cell biology is largely unexplored.
Purpose of the Study:
- To investigate the role of NR2F6 in NK cell development, function, and anti-tumor immunity.
- To determine if NR2F6 impacts NKp46 expression and NK cell-mediated cytotoxicity.
- To explore therapeutic strategies involving NR2F6 modulation for cancer treatment.
Main Methods:
- Utilized germline Nr2f6-deficient mice to study NK cell development and function.
- Administered lipopolysaccharide (LPS) for short-term NK cell activation studies.
- Employed in vitro and in vivo IL-15 administration to NR2F6-deficient mice.
- Performed transcriptome analysis on NK cells from treated mice.
- Assessed NK cell-mediated anti-tumor responses using B16-F10 melanoma metastasis model.
Main Results:
- Nr2f6 deficiency impaired peripheral NK cell maturation and reduced responses to LPS activation.
- Decreased conventional type 1 dendritic cell (cDC1) and macrophage populations limited IL-15-dependent NK cell priming.
- IL-15 administration rescued NK cell maturation and enhanced effector functions (IFNγ, Perforin, Granzyme B).
- Nr2f6-deficient mice showed protection against melanoma lung metastasis, particularly with IL-15 complex treatment.
Conclusions:
- NR2F6 negatively regulates NKp46 expression and NK cell-mediated anti-tumor surveillance.
- IL-15 can overcome NR2F6-deficiency-induced NK cell defects.
- Targeting NR2F6 represents a potential therapeutic strategy to enhance NK cell-based anti-tumor immunity.
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