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Isolation and Characterization of Dendritic Cells and Macrophages from the Mouse Intestine
Published on: May 21, 2012
microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit
Zhijie Lin1,2, Xiaoyan Xie1, Min Gu1
1Department of Immunology, Institute of Translational Medicine, Medical College, Yangzhou University, Yangzhou, China.
Abstract:
The microRNAs miR-144/451 are highly conserved miRNA that is strongly induced during erythropoiesis. Despite the biological functions of miR-144/451 have been extensively studied in erythropoiesis and tumorigenesis, few studies have been conducted in immune responses. In this study, we showed that miR-144/451-/- DCs exhibit increased activation. Mechanistically, the miR-144 directly targets the 3`-UTR of IRF5 and represses the expression of IRF5 in DCs. Ectopic expression of miR-144/451 by lentiviruses downregulates the levels of IRF5 and suppresses DCs function. In addition, knockdown of IRF5 by shRNA significantly inhibits activities of the miR-144/451-/- DCs. Expression of miR144/451 was decreased in DCs from both patients with IBD and mice with DSS-colitis compared with controls. Human PBMC derived DCs were downregulated expression of miR144/451 after LPS stimulation. In the DSS-induced colitis mice model, we showed that ablation of the miR-144/451 gene causes severe colitis, and their DCs from both periphery and MLN expressed higher co-stimulatory molecules and pro-inflammatory cytokines than wild-type mice. In addition, DCs isolated from miR-144/451-/- mice transfusion exacerbates mice colitis. In the bone marrow transplanted chimeric mice model, we show that miR-144/451-/- bone marrow transplantation deteriorated DSS-induced colitis. At last, we treat the mice with miR-144/451 delivered by chitosan nanoparticles revealing protective effects in DSS-induced colitis mice. Thus, our results reveal a novel miR144/451-IRF5 pathway in DCs that protects experimental colitis. The manipulation of miR-144/451 expression and DCs activation in IBD patients may be a novel therapeutic approach for the treatment of inflammatory diseases.
Insights
MicroRNAs miR-144/451 regulate dendritic cell (DC) activation by targeting IRF5. Loss of miR-144/451 exacerbates experimental colitis, suggesting a therapeutic role in inflammatory diseases.
Area of Science:
- Immunology
- Molecular Biology
- Gastroenterology
Background:
- MicroRNAs miR-144/451 are known for roles in erythropoiesis and tumorigenesis.
- Their function in immune responses, particularly in dendritic cells (DCs), is less understood.
- Inflammatory bowel disease (IBD) involves complex immune dysregulation.
Purpose of the Study:
- To investigate the role of miR-144/451 in DC function and immune responses.
- To elucidate the molecular mechanism underlying miR-144/451 regulation of DCs.
- To evaluate the therapeutic potential of miR-144/451 in experimental colitis.
Main Methods:
- Generated miR-144/451 knockout mice and dendritic cells.
- Utilized lentiviral vectors for ectopic miR-144/451 expression and shRNA for IRF5 knockdown.
- Employed DSS-induced colitis models, bone marrow transplantation, and nanoparticle delivery systems.
Main Results:
- miR-144/451 knockout DCs showed enhanced activation and pro-inflammatory cytokine production.
- miR-144 directly targets and represses IRF5 expression in DCs.
- Loss of miR-144/451 worsened DSS-induced colitis, while miR-144/451 delivery showed protective effects.
Conclusions:
- A novel miR-144/451-IRF5 pathway in DCs regulates immune responses and protects against experimental colitis.
- Downregulation of miR-144/451 is observed in IBD patients and experimental colitis models.
- Modulating miR-144/451 and DC activation presents a potential therapeutic strategy for inflammatory diseases.
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