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The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p

BACKGROUND: IL-4-driven alternative macrophage activation and proliferation are characteristic features of both antihelminthic immune responses and wound healing in contrast to classical macrophage activation, which primarily occurs during inflammatory responses. The signaling pathways defining the...

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Autores principales: Czimmerer, Zsolt, Varga, Tamas, Kiss, Mate, Vázquez, Cesaré Ovando, Doan-Xuan, Quang Minh, Rückerl, Dominik, Tattikota, Sudhir Gopal, Yan, Xin, Nagy, Zsuzsanna S., Daniel, Bence, Poliska, Szilard, Horvath, Attila, Nagy, Gergely, Varallyay, Eva, Poy, Matthew N., Allen, Judith E., Bacso, Zsolt, Abreu-Goodger, Cei, Nagy, Laszlo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4886428/
https://www.ncbi.nlm.nih.gov/pubmed/27245778
http://dx.doi.org/10.1186/s13073-016-0315-y
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author Czimmerer, Zsolt
Varga, Tamas
Kiss, Mate
Vázquez, Cesaré Ovando
Doan-Xuan, Quang Minh
Rückerl, Dominik
Tattikota, Sudhir Gopal
Yan, Xin
Nagy, Zsuzsanna S.
Daniel, Bence
Poliska, Szilard
Horvath, Attila
Nagy, Gergely
Varallyay, Eva
Poy, Matthew N.
Allen, Judith E.
Bacso, Zsolt
Abreu-Goodger, Cei
Nagy, Laszlo
author_facet Czimmerer, Zsolt
Varga, Tamas
Kiss, Mate
Vázquez, Cesaré Ovando
Doan-Xuan, Quang Minh
Rückerl, Dominik
Tattikota, Sudhir Gopal
Yan, Xin
Nagy, Zsuzsanna S.
Daniel, Bence
Poliska, Szilard
Horvath, Attila
Nagy, Gergely
Varallyay, Eva
Poy, Matthew N.
Allen, Judith E.
Bacso, Zsolt
Abreu-Goodger, Cei
Nagy, Laszlo
author_sort Czimmerer, Zsolt
collection PubMed
description BACKGROUND: IL-4-driven alternative macrophage activation and proliferation are characteristic features of both antihelminthic immune responses and wound healing in contrast to classical macrophage activation, which primarily occurs during inflammatory responses. The signaling pathways defining the genome-wide microRNA expression profile as well as the cellular functions controlled by microRNAs during alternative macrophage activation are largely unknown. Hence, in the current work we examined the regulation and function of IL-4-regulated microRNAs in human and mouse alternative macrophage activation. METHODS: We utilized microarray-based microRNA profiling to detect the dynamic expression changes during human monocyte–macrophage differentiation and IL-4-mediated alternative macrophage activation. The expression changes and upstream regulatory pathways of selected microRNAs were further investigated in human and mouse in vitro and in vivo models of alternative macrophage activation by integrating small RNA-seq, ChIP-seq, ChIP-quantitative PCR, and gene expression data. MicroRNA-controlled gene networks and corresponding functions were identified using a combination of transcriptomic, bioinformatic, and functional approaches. RESULTS: The IL-4-controlled microRNA expression pattern was identified in models of human and mouse alternative macrophage activation. IL-4-dependent induction of miR-342-3p and repression of miR-99b along with miR-125a-5p occurred in both human and murine macrophages in vitro. In addition, a similar expression pattern was observed in peritoneal macrophages of Brugia malayi nematode-implanted mice in vivo. By using IL4Rα- and STAT6-deficient macrophages, we were able to show that IL-4-dependent regulation of miR-342-3p, miR-99b, and miR-125a-5p is mediated by the IL-4Rα–STAT6 signaling pathway. The combination of gene expression studies and chromatin immunoprecipitation experiments demonstrated that both miR-342-3p and its host gene, EVL, are coregulated directly by STAT6. Finally, we found that miR-342-3p is capable of controlling macrophage survival through targeting an anti-apoptotic gene network including Bcl2l1. CONCLUSIONS: Our findings identify a conserved IL-4/STAT6-regulated microRNA signature in alternatively activated human and mouse macrophages. Moreover, our study indicates that miR-342-3p likely plays a pro-apoptotic role in such cells, thereby providing a negative feedback arm to IL-4-dependent macrophage proliferation. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13073-016-0315-y) contains supplementary material, which is available to authorized users.
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spelling pubmed-48864282016-06-01 The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p Czimmerer, Zsolt Varga, Tamas Kiss, Mate Vázquez, Cesaré Ovando Doan-Xuan, Quang Minh Rückerl, Dominik Tattikota, Sudhir Gopal Yan, Xin Nagy, Zsuzsanna S. Daniel, Bence Poliska, Szilard Horvath, Attila Nagy, Gergely Varallyay, Eva Poy, Matthew N. Allen, Judith E. Bacso, Zsolt Abreu-Goodger, Cei Nagy, Laszlo Genome Med Research BACKGROUND: IL-4-driven alternative macrophage activation and proliferation are characteristic features of both antihelminthic immune responses and wound healing in contrast to classical macrophage activation, which primarily occurs during inflammatory responses. The signaling pathways defining the genome-wide microRNA expression profile as well as the cellular functions controlled by microRNAs during alternative macrophage activation are largely unknown. Hence, in the current work we examined the regulation and function of IL-4-regulated microRNAs in human and mouse alternative macrophage activation. METHODS: We utilized microarray-based microRNA profiling to detect the dynamic expression changes during human monocyte–macrophage differentiation and IL-4-mediated alternative macrophage activation. The expression changes and upstream regulatory pathways of selected microRNAs were further investigated in human and mouse in vitro and in vivo models of alternative macrophage activation by integrating small RNA-seq, ChIP-seq, ChIP-quantitative PCR, and gene expression data. MicroRNA-controlled gene networks and corresponding functions were identified using a combination of transcriptomic, bioinformatic, and functional approaches. RESULTS: The IL-4-controlled microRNA expression pattern was identified in models of human and mouse alternative macrophage activation. IL-4-dependent induction of miR-342-3p and repression of miR-99b along with miR-125a-5p occurred in both human and murine macrophages in vitro. In addition, a similar expression pattern was observed in peritoneal macrophages of Brugia malayi nematode-implanted mice in vivo. By using IL4Rα- and STAT6-deficient macrophages, we were able to show that IL-4-dependent regulation of miR-342-3p, miR-99b, and miR-125a-5p is mediated by the IL-4Rα–STAT6 signaling pathway. The combination of gene expression studies and chromatin immunoprecipitation experiments demonstrated that both miR-342-3p and its host gene, EVL, are coregulated directly by STAT6. Finally, we found that miR-342-3p is capable of controlling macrophage survival through targeting an anti-apoptotic gene network including Bcl2l1. CONCLUSIONS: Our findings identify a conserved IL-4/STAT6-regulated microRNA signature in alternatively activated human and mouse macrophages. Moreover, our study indicates that miR-342-3p likely plays a pro-apoptotic role in such cells, thereby providing a negative feedback arm to IL-4-dependent macrophage proliferation. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13073-016-0315-y) contains supplementary material, which is available to authorized users. BioMed Central 2016-05-31 /pmc/articles/PMC4886428/ /pubmed/27245778 http://dx.doi.org/10.1186/s13073-016-0315-y Text en © The Author(s). 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Czimmerer, Zsolt
Varga, Tamas
Kiss, Mate
Vázquez, Cesaré Ovando
Doan-Xuan, Quang Minh
Rückerl, Dominik
Tattikota, Sudhir Gopal
Yan, Xin
Nagy, Zsuzsanna S.
Daniel, Bence
Poliska, Szilard
Horvath, Attila
Nagy, Gergely
Varallyay, Eva
Poy, Matthew N.
Allen, Judith E.
Bacso, Zsolt
Abreu-Goodger, Cei
Nagy, Laszlo
The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p
title The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p
title_full The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p
title_fullStr The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p
title_full_unstemmed The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p
title_short The IL-4/STAT6 signaling axis establishes a conserved microRNA signature in human and mouse macrophages regulating cell survival via miR-342-3p
title_sort il-4/stat6 signaling axis establishes a conserved microrna signature in human and mouse macrophages regulating cell survival via mir-342-3p
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4886428/
https://www.ncbi.nlm.nih.gov/pubmed/27245778
http://dx.doi.org/10.1186/s13073-016-0315-y
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