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microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis

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 m...

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Autores principales: Lin, Zhijie, Xie, Xiaoyan, Gu, Min, Chen, Qian, Lu, Guotao, Jia, Xiaoqin, Xiao, Weiming, Zhang, Jun, Yu, Duonan, Gong, Weijuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9372465/
https://www.ncbi.nlm.nih.gov/pubmed/35967345
http://dx.doi.org/10.3389/fimmu.2022.928593
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author Lin, Zhijie
Xie, Xiaoyan
Gu, Min
Chen, Qian
Lu, Guotao
Jia, Xiaoqin
Xiao, Weiming
Zhang, Jun
Yu, Duonan
Gong, Weijuan
author_facet Lin, Zhijie
Xie, Xiaoyan
Gu, Min
Chen, Qian
Lu, Guotao
Jia, Xiaoqin
Xiao, Weiming
Zhang, Jun
Yu, Duonan
Gong, Weijuan
author_sort Lin, Zhijie
collection PubMed
description 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.
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spelling pubmed-93724652022-08-13 microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis Lin, Zhijie Xie, Xiaoyan Gu, Min Chen, Qian Lu, Guotao Jia, Xiaoqin Xiao, Weiming Zhang, Jun Yu, Duonan Gong, Weijuan Front Immunol Immunology 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. Frontiers Media S.A. 2022-07-29 /pmc/articles/PMC9372465/ /pubmed/35967345 http://dx.doi.org/10.3389/fimmu.2022.928593 Text en Copyright © 2022 Lin, Xie, Gu, Chen, Lu, Jia, Xiao, Zhang, Yu and Gong https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Lin, Zhijie
Xie, Xiaoyan
Gu, Min
Chen, Qian
Lu, Guotao
Jia, Xiaoqin
Xiao, Weiming
Zhang, Jun
Yu, Duonan
Gong, Weijuan
microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis
title microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis
title_full microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis
title_fullStr microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis
title_full_unstemmed microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis
title_short microRNA-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit DSS-induced colitis
title_sort microrna-144/451 decreases dendritic cell bioactivity via targeting interferon-regulatory factor 5 to limit dss-induced colitis
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9372465/
https://www.ncbi.nlm.nih.gov/pubmed/35967345
http://dx.doi.org/10.3389/fimmu.2022.928593
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