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A microRNA processing defect in smokers' macrophages is linked to SUMOylation of the endonuclease DICER
Thomas J Gross1, Linda S Powers, Ryan L Boudreau
1From the Department of Medicine, Carver College of Medicine, University of Iowa, Iowa City, Iowa 52242.
Abstract:
Despite the fact that alveolar macrophages play an important role in smoking-related disease, little is known about what regulates their pathophysiologic phenotype. Evaluating smoker macrophages, we found significant down-regulation of multiple microRNAs (miRNAs). This work investigates the hypothesis that cigarette smoke alters mature miRNA expression in lung macrophages by inhibiting processing of primary miRNA transcripts. Studies on smoker alveolar macrophages showed a defect in miRNA maturation. Studies on the miRNA biogenesis machinery led us to focus on the cytosolic RNA endonuclease, DICER. DICER cleaves the stem-loop structure from pre-miRNAs, allowing them to dissociate into their mature 20-22-nucleotide single-stranded form. DICER activity assays confirmed impaired DICER activity following cigarette smoke exposure. Further protein studies demonstrated a decreased expression of the native 217-kDa form of DICER and an accumulation of high molecular weight forms with cigarette smoke exposure. This molecular mass shift was shown to contain SUMO moieties and could be blocked by silencing RNA directed at the primary SUMOylating ligase, Ubc9. In determining the cigarette smoke components responsible for changes in DICER, we found that N-acetylcysteine, an antioxidant and anti-aldehyde, protected DICER protein and activity from cigarette smoke extract. This massive down-regulation of miRNAs (driven in part by alterations in DICER) may be an important regulator of the disease-promoting macrophage phenotype found in the lungs of smokers.
Insights
Cigarette smoke impairs microRNA (miRNA) maturation in lung macrophages by affecting DICER activity. This leads to altered macrophage function, potentially promoting smoking-related lung diseases.
Area of Science:
- Molecular Biology
- Immunology
- Pulmonary Medicine
Background:
- Alveolar macrophages are crucial in smoking-related diseases, but their altered phenotype regulation is poorly understood.
- Smoker macrophages exhibit significant down-regulation of multiple microRNAs (miRNAs).
Purpose of the Study:
- To investigate if cigarette smoke inhibits microRNA processing in lung macrophages by affecting primary miRNA transcript processing.
- To identify the molecular mechanisms behind altered miRNA expression in smoker macrophages.
Main Methods:
- Analysis of miRNA expression and maturation in alveolar macrophages from smokers.
- Assays to evaluate DICER (a key enzyme in miRNA biogenesis) activity and protein levels.
- Investigation of SUMOylation of DICER and the role of Ubc9.
- Assessment of N-acetylcysteine's protective effects against cigarette smoke extract.
Main Results:
- Smoker alveolar macrophages demonstrated impaired miRNA maturation.
- Cigarette smoke exposure led to decreased DICER activity and altered DICER protein forms, including SUMOylation.
- N-acetylcysteine protected DICER protein and activity from cigarette smoke extract.
Conclusions:
- Cigarette smoke-induced alterations in DICER activity and expression contribute to miRNA down-regulation in lung macrophages.
- This miRNA dysregulation may promote the disease-promoting macrophage phenotype observed in smokers' lungs.
- Targeting DICER or related pathways could offer therapeutic strategies for smoking-related lung diseases.
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