Targeted deletion of NFAT-Interacting-Protein-(NIP) 45 resolves experimental asthma by inhibiting Innate Lymphoid Cells group 2 (ILC2).
Sonja KochLisa KnipferJulia KölleHooman MirzakhaniAnna GraserTheodor ZimmermannAlexander KieferVolker O MelicharWolfgang RascherPapadopoulos G NikolaosRalf J RiekerBenjamin A RabyScott T WeissStefan WirtzSusetta FinottoPublished in: Scientific reports (2019)
Here we investigated the role of NFAT-interacting protein (NIP)-45, an Interleukin (IL)-4 inducing Transcription Factor, and its impact on the differentiation of Group 2 Innate -Lymphoid -Cells (ILC2s) in the pathogenesis of asthma. NIP45, a transcription factor regulating NFATc1 activity, mRNA was found to be induced in the Peripheral Blood mononuclear cells (PMBCs) of asthmatic pre-school children with allergies and in the peripheral blood CD4+ T cells from adult asthmatic patients. In PBMCs of asthmatic and control children, NIP45 mRNA directly correlated with NFATc1 but not with T-bet. Targeted deletion of NIP45 in mice resulted in a protective phenotype in experimental asthma with reduced airway mucus production, airway hyperresponsiveness and eosinophils. This phenotype was reversed by intranasal delivery of recombinant r-IL-33. Consistently, ILC2s and not GATA3+ CD4+ T-cells were decreased in the lungs of asthmatic NIP45-/- mice. Reduced cell number spleen ILC2s could be differentiated from NIP45-/- as compared to wild-type mice after in vivo injection of a microcircle-DNA vector expressing IL-25 and decreased cytokines and ILC2 markers in ILC2 differentiated from the bone marrow of NIP45-/- mice. NIP45 thus emerges as a new therapeutic target for the resolution of the airway pathology, down-regulation of ILC2s and mucus production in asthma.
Keyphrases
- lung function
- wild type
- nk cells
- transcription factor
- chronic obstructive pulmonary disease
- high fat diet induced
- bone marrow
- induced apoptosis
- peripheral blood
- cystic fibrosis
- end stage renal disease
- allergic rhinitis
- young adults
- newly diagnosed
- cancer therapy
- binding protein
- mesenchymal stem cells
- endoplasmic reticulum stress
- drug delivery
- prognostic factors
- type diabetes
- single cell
- diabetic rats
- adipose tissue
- cell free
- small molecule
- protein kinase
- amino acid
- genome wide identification
- circulating tumor cells