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Published on: January 9, 2018
Fra-2 Is a Dominant Negative Regulator of Natural Killer Cell Development
Diana Schnoegl1, Mathias Hochgerner1, Dagmar Gotthardt2
1Ludwig Boltzmann Institute for Lung Vascular Research, Graz, Austria.
Abstract:
Natural killer (NK) cells play an important role in recognizing and killing pathogen-infected or malignant cells. Changes in their numbers or activation can contribute to several diseases and pathologies including systemic sclerosis (SSc), an autoimmune disease characterized by inflammation and tissue remodeling. In these patients, increased expression of the AP-1 transcription factor, Fra-2 was reported. In mice ectopic overexpression of Fra-2 (TG) leads to SSc with strong pulmonary fibrosis, pulmonary hypertension, and inflammation. Analysis of the underlying immune cell profile in the lungs of young TG mice, which do not yet show any signs of lung disease, revealed increased numbers of eosinophils and T cells but strongly reduced NK numbers. Therefore, we aimed to identify the cause of the absence of NK cells in the lungs of these mice and to determine the potential role of Fra-2 in NK development. Examination of inflammatory cell distribution in TG mice revealed similar NK deficiencies in the spleen, blood, and bone marrow. Deeper analysis of the WT and TG bone marrow revealed a potential NK cell developmental defect beginning at the preNKP stage. To determine whether this defect was cell-intrinsic or extrinsic, mixed bone marrow chimera and in vitro differentiation experiments were performed. Both experiments showed that the defect caused by Fra-2 was primarily cell-intrinsic and minimally dependent on the environment. Closer examination of surface markers and transcription factors required for NK development, revealed the expected receptor distribution but changes in transcription factor expression. We found a significant reduction in Nfil3, which is essential for the transition of common lymphoid cells to NK committed precursor cells and an AP-1 binding site in the promotor of this gene. In Summary, our data demonstrates that regulation of Fra-2 is essential for NK development and maturation, and suggests that the early NK dysfunction plays an important role in the pathogenesis of systemic sclerosis.
Insights
The transcription factor Fra-2 is essential for natural killer (NK) cell development. Its dysregulation causes NK cell deficiency, contributing to systemic sclerosis pathogenesis.
Area of Science:
- Immunology
- Cell Biology
- Autoimmune Diseases
Background:
- Natural killer (NK) cells are crucial for immune surveillance against pathogens and cancer.
- Systemic sclerosis (SSc) involves inflammation and tissue remodeling, with elevated Fra-2 expression observed in patients.
- Overexpression of Fra-2 in mice models SSc, including pulmonary complications.
Purpose of the Study:
- To investigate the cause of NK cell absence in Fra-2 overexpressing mice.
- To determine the role of Fra-2 in NK cell development and maturation.
- To elucidate the contribution of NK cell dysfunction to SSc pathogenesis.
Main Methods:
- Analysis of immune cell populations in wild-type (WT) and Fra-2 transgenic (TG) mice.
- Bone marrow chimera and in vitro differentiation assays to assess cell-intrinsic vs. extrinsic defects.
- Examination of surface markers and transcription factor expression critical for NK development.
Main Results:
- Fra-2 overexpression led to a systemic deficiency in NK cells, starting from the preNKP stage.
- The NK cell developmental defect was primarily cell-intrinsic to Fra-2.
- Reduced expression of Nfil3, a key transcription factor for NK commitment, was observed, with an identified AP-1 binding site in its promoter.
Conclusions:
- Fra-2 regulation is critical for normal NK cell development and maturation.
- Early NK cell dysfunction, driven by Fra-2, plays a significant role in the development of systemic sclerosis.
- Targeting Fra-2 may offer therapeutic potential for SSc and related conditions.
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