Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway

<p>Abstract</p> <p>Background</p> <p>Microglia are the principal cells involved in the innate immune response in the CNS. Activated microglia produce a number of proinflammatory cytokines implicated in neurotoxicity but they also are a major source of anti-inflammatory...

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Main Authors: Tarassishin Leonid, Suh Hyeon-Sook, Lee Sunhee C
Format: Article
Language:English
Published: BMC 2011-12-01
Series:Journal of Neuroinflammation
Subjects:
TLR
Online Access:http://www.jneuroinflammation.com/content/8/1/187
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spelling doaj-991b262608f045b79a7316a7b41df6a52020-11-24T21:39:43ZengBMCJournal of Neuroinflammation1742-20942011-12-018118710.1186/1742-2094-8-187Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathwayTarassishin LeonidSuh Hyeon-SookLee Sunhee C<p>Abstract</p> <p>Background</p> <p>Microglia are the principal cells involved in the innate immune response in the CNS. Activated microglia produce a number of proinflammatory cytokines implicated in neurotoxicity but they also are a major source of anti-inflammatory cytokines, antiviral proteins and growth factors. Therefore, an immune therapy aiming at suppressing the proinflammatory phenotype while enhancing the anti-inflammatory, growth promoting phenotype would be of great benefit. In the current study, we tested the hypothesis that interferon regulatory factor 3 (IRF3), a transcription factor required for the induction of IFNβ following TLR3 or TLR4 activation, is critical to the microglial phenotype change from proinflammatory to anti-inflammatory, and that this phenotype change can be greatly facilitated by IRF3 gene transfer.</p> <p>Methods</p> <p>Cultures of primary human fetal microglia were transduced with IRF3 using recombinant adenovirus (Ad-IRF3) and subjected to microarray analysis, real-time PCR, immunoblotting and ELISA to determine inflammatory gene expression. Two different types of immune stimuli were tested, the TLR ligands, poly IC (PIC) and LPS, and the proinflammatory cytokines, IL-1/IFNγ. In addition, the role of the PI3K/Akt pathway was examined by use of a pharmacological inhibitor, LY294002.</p> <p>Results</p> <p>Our results show that Ad-IRF3 suppressed proinflammatory genes (IL-1α, IL-1β, TNFα, IL-6, IL-8 and CXCL1) and enhanced anti-inflammatory genes (IL-1 receptor antagonist, IL-10 and IFNβ) in microglia, regardless of the cell stimuli applied. Furthermore, Ad-IRF3 activated Akt, and LY294002 reversed the effects of Ad-IRF3 on microglial inflammatory gene expression. pAkt was critical in LPS- or PIC-induced production of IL-10 and IL-1ra. Significantly, microglial IFNβ protein production was also dependent on pAkt and required both Ad-IRF3 and immunological stimuli (PIC > IL-1/IFNγ). pAkt played much less prominent and variable roles in microglial proinflammatory gene expression. This anti-inflammatory promoting role of PI3K/Akt appeared to be specific to microglia, since astrocyte proinflammatory gene expression (as well as IFNβ expression) required PI3K/Akt.</p> <p>Conclusions</p> <p>Our results show a novel anti-inflammatory role for the PI3K/Akt signaling pathway in microglia. They further suggest that IRF3 gene therapy could facilitate the microglial phenotype switch from proinflammatory ("M1-like") to anti-inflammatory and immunomodulatory ("M2-like"), in part, by augmenting the level of pAkt.</p> http://www.jneuroinflammation.com/content/8/1/187neuroinflammationneurodegenerationinnate immunityhumancytokineschemokinesantiviral genesmicroarrayinterferon-betaTLR
collection DOAJ
language English
format Article
sources DOAJ
author Tarassishin Leonid
Suh Hyeon-Sook
Lee Sunhee C
spellingShingle Tarassishin Leonid
Suh Hyeon-Sook
Lee Sunhee C
Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway
Journal of Neuroinflammation
neuroinflammation
neurodegeneration
innate immunity
human
cytokines
chemokines
antiviral genes
microarray
interferon-beta
TLR
author_facet Tarassishin Leonid
Suh Hyeon-Sook
Lee Sunhee C
author_sort Tarassishin Leonid
title Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway
title_short Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway
title_full Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway
title_fullStr Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway
title_full_unstemmed Interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the PI3K/Akt pathway
title_sort interferon regulatory factor 3 plays an anti-inflammatory role in microglia by activating the pi3k/akt pathway
publisher BMC
series Journal of Neuroinflammation
issn 1742-2094
publishDate 2011-12-01
description <p>Abstract</p> <p>Background</p> <p>Microglia are the principal cells involved in the innate immune response in the CNS. Activated microglia produce a number of proinflammatory cytokines implicated in neurotoxicity but they also are a major source of anti-inflammatory cytokines, antiviral proteins and growth factors. Therefore, an immune therapy aiming at suppressing the proinflammatory phenotype while enhancing the anti-inflammatory, growth promoting phenotype would be of great benefit. In the current study, we tested the hypothesis that interferon regulatory factor 3 (IRF3), a transcription factor required for the induction of IFNβ following TLR3 or TLR4 activation, is critical to the microglial phenotype change from proinflammatory to anti-inflammatory, and that this phenotype change can be greatly facilitated by IRF3 gene transfer.</p> <p>Methods</p> <p>Cultures of primary human fetal microglia were transduced with IRF3 using recombinant adenovirus (Ad-IRF3) and subjected to microarray analysis, real-time PCR, immunoblotting and ELISA to determine inflammatory gene expression. Two different types of immune stimuli were tested, the TLR ligands, poly IC (PIC) and LPS, and the proinflammatory cytokines, IL-1/IFNγ. In addition, the role of the PI3K/Akt pathway was examined by use of a pharmacological inhibitor, LY294002.</p> <p>Results</p> <p>Our results show that Ad-IRF3 suppressed proinflammatory genes (IL-1α, IL-1β, TNFα, IL-6, IL-8 and CXCL1) and enhanced anti-inflammatory genes (IL-1 receptor antagonist, IL-10 and IFNβ) in microglia, regardless of the cell stimuli applied. Furthermore, Ad-IRF3 activated Akt, and LY294002 reversed the effects of Ad-IRF3 on microglial inflammatory gene expression. pAkt was critical in LPS- or PIC-induced production of IL-10 and IL-1ra. Significantly, microglial IFNβ protein production was also dependent on pAkt and required both Ad-IRF3 and immunological stimuli (PIC > IL-1/IFNγ). pAkt played much less prominent and variable roles in microglial proinflammatory gene expression. This anti-inflammatory promoting role of PI3K/Akt appeared to be specific to microglia, since astrocyte proinflammatory gene expression (as well as IFNβ expression) required PI3K/Akt.</p> <p>Conclusions</p> <p>Our results show a novel anti-inflammatory role for the PI3K/Akt signaling pathway in microglia. They further suggest that IRF3 gene therapy could facilitate the microglial phenotype switch from proinflammatory ("M1-like") to anti-inflammatory and immunomodulatory ("M2-like"), in part, by augmenting the level of pAkt.</p>
topic neuroinflammation
neurodegeneration
innate immunity
human
cytokines
chemokines
antiviral genes
microarray
interferon-beta
TLR
url http://www.jneuroinflammation.com/content/8/1/187
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