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Autor(en) / Beteiligte
Titel
MicroRNA-9 regulates steroid-resistant airway hyperresponsiveness by reducing protein phosphatase 2A activity
Ist Teil von
  • Journal of allergy and clinical immunology, 2015-08, Vol.136 (2), p.462-473
Ort / Verlag
United States: Elsevier Inc
Erscheinungsjahr
2015
Quelle
MEDLINE
Beschreibungen/Notizen
  • Background Steroid-resistant asthma is a major clinical problem that is linked to activation of innate immune cells. Levels of IFN-γ and LPS are often increased in these patients. Cooperative signaling between IFN-γ/LPS induces macrophage-dependent steroid-resistant airway hyperresponsiveness (AHR) in mouse models. MicroRNAs (miRs) are small noncoding RNAs that regulate the function of innate immune cells by controlling mRNA stability and translation. Their role in regulating glucocorticoid responsiveness and AHR remains unexplored. Objective IFN-γ and LPS synergistically increase the expression of miR-9 in macrophages and lung tissue, suggesting a role in the mechanisms of steroid resistance. Here we demonstrate the role of miR-9 in IFN-γ/LPS–induced inhibition of dexamethasone (DEX) signaling in macrophages and in induction of steroid-resistant AHR. Methods MiRNA-9 expression was assessed by means of quantitative RT-PCR. Putative miR-9 targets were determined in silico and confirmed in luciferase reporter assays. miR-9 function was inhibited with sequence-specific antagomirs. The efficacy of DEX was assessed by quantifying glucocorticoid receptor (GR) cellular localization, protein phosphatase 2A (PP2A) activity, and AHR. Results Exposure of pulmonary macrophages to IFN-γ/LPS synergistically induced miR-9 expression; reduced levels of its target transcript, protein phosphatase 2 regulatory subunit B (B56) δ isoform; attenuated PP2A activity; and inhibited DEX-induced GR nuclear translocation. Inhibition of miR-9 increased both PP2A activity and GR nuclear translocation in macrophages and restored steroid sensitivity in multiple models of steroid-resistant AHR. Pharmacologic activation of PP2A restored DEX efficacy and inhibited AHR. MiR-9 expression was increased in sputum of patients with neutrophilic but not those with eosinophilic asthma. Conclusion MiR-9 regulates GR signaling and steroid-resistant AHR. Targeting miR-9 function might be a novel approach for the treatment of steroid-resistant asthma.
Sprache
Englisch
Identifikatoren
ISSN: 0091-6749
eISSN: 1097-6825
DOI: 10.1016/j.jaci.2014.11.044
Titel-ID: cdi_proquest_miscellaneous_1709180806
Format
Schlagworte
Allergy and Immunology, Animals, Asthma - chemically induced, Asthma - drug therapy, Asthma - genetics, Asthma - immunology, Bronchial Hyperreactivity - chemically induced, Bronchial Hyperreactivity - drug therapy, Bronchial Hyperreactivity - genetics, Bronchial Hyperreactivity - immunology, Dexamethasone - pharmacology, Disease, Disease Models, Animal, Egg Hypersensitivity - drug therapy, Egg Hypersensitivity - etiology, Egg Hypersensitivity - genetics, Egg Hypersensitivity - immunology, Eosinophils - drug effects, Eosinophils - immunology, Eosinophils - pathology, Gene expression, Gene Expression Regulation, Genes, Reporter, Glucocorticoids - pharmacology, Humans, Inflammation, innate immunity, Interferon-gamma - pharmacology, Lipopolysaccharides - pharmacology, Luciferases - genetics, Luciferases - immunology, Macrophages, Alveolar - drug effects, Macrophages, Alveolar - immunology, Macrophages, Alveolar - pathology, Mice, Mice, Inbred BALB C, MicroRNA, MicroRNAs, MicroRNAs - antagonists & inhibitors, MicroRNAs - genetics, MicroRNAs - immunology, Neutrophils - drug effects, Neutrophils - immunology, Neutrophils - pathology, Oligonucleotides - genetics, Oligonucleotides - metabolism, Ovalbumin, Pathogenesis, Phosphatase, Phosphorylation, Primary Cell Culture, Protein Phosphatase 2 - genetics, Protein Phosphatase 2 - immunology, protein phosphatase 2A, Proteins, pulmonary macrophages, Receptors, Glucocorticoid - genetics, Receptors, Glucocorticoid - immunology, Rodents, Signal Transduction, steroid-resistant airway hyperresponsiveness

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