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Culture and Imaging of Human Nasal Epithelial Organoids
Published on: December 17, 2021
miR-126 is downregulated in cystic fibrosis airway epithelial cells and regulates TOM1 expression
Irene K Oglesby1, Isabella M Bray, Sanjay H Chotirmall
1Respiratory Research Division, Department of Medicine, Royal College of Surgeons in Ireland, Beaumont Hospital, Ireland.
Abstract:
Cystic fibrosis (CF) is one of the most common lethal genetic diseases in which the role of microRNAs has yet to be explored. Predicted to be regulated by miR-126, TOM1 (target of Myb1) has been shown to interact with Toll-interacting protein, forming a complex to regulate endosomal trafficking of ubiquitinated proteins. TOM1 has also been proposed as a negative regulator of IL-1beta and TNF-alpha-induced signaling pathways. MiR-126 is highly expressed in the lung, and we now show for the first time differential expression of miR-126 in CF versus non-CF airway epithelial cells both in vitro and in vivo. MiR-126 downregulation in CF bronchial epithelial cells correlated with a significant upregulation of TOM1 mRNA, both in vitro and in vivo when compared with their non-CF counterparts. Introduction of synthetic pre-miR-126 inhibited luciferase activity in a reporter system containing the full length 3'-untranslated region of TOM1 and resulted in decreased TOM1 protein production in CF bronchial epithelial cells. Following stimulation with LPS or IL-1beta, overexpression of TOM1 was found to downregulate NF-kappaB luciferase activity. Conversely, TOM1 knockdown resulted in a significant increase in NF-kappaB regulated IL-8 secretion. These data show that miR-126 is differentially regulated in CF versus non-CF airway epithelial cells and that TOM1 is a miR-126 target that may have an important role in regulating innate immune responses in the CF lung. To our knowledge, this study is the first to report of a role for TOM1 in the TLR2/4 signaling pathways and the first to describe microRNA involvement in CF.
Insights
MicroRNA-126 (miR-126) is downregulated in cystic fibrosis (CF) airway cells, leading to increased TOM1 expression. This suggests a novel role for miR-126 and TOM1 in CF innate immune responses.
Area of Science:
- Molecular Biology
- Genetics
- Immunology
Background:
- Cystic Fibrosis (CF) is a lethal genetic disease with unexplored microRNA roles.
- MicroRNAs (miRNAs) regulate gene expression; miR-126 is lung-expressed.
- TOM1 interacts with proteins to regulate endosomal trafficking and innate immune signaling.
Purpose of the Study:
- To investigate the role of miR-126 in CF airway epithelial cells.
- To identify targets of miR-126 in the context of CF.
- To explore the involvement of miR-126 and TOM1 in CF innate immunity.
Main Methods:
- Differential expression analysis of miR-126 and TOM1 mRNA in CF and non-CF cells (in vitro and in vivo).
- Luciferase reporter assays to confirm TOM1 as a miR-126 target.
- Overexpression and knockdown studies of TOM1 to assess its effect on NF-kappaB signaling and IL-8 secretion.
Main Results:
- miR-126 was downregulated, and TOM1 mRNA was upregulated in CF airway epithelial cells.
- Synthetic miR-126 reduced TOM1 protein levels in CF cells.
- TOM1 modulated NF-kappaB activity and IL-8 secretion, indicating a role in innate immune responses.
Conclusions:
- miR-126 is differentially expressed in CF airway cells and targets TOM1.
- TOM1 plays a role in regulating innate immune responses in the CF lung.
- This study reveals microRNA involvement in CF pathogenesis and TOM1's role in TLR signaling.
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