Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.

In inflammation, pro-inflammatory cytokines and bacterial products induce the production of high amounts of NO by inducible nitric oxide synthase (iNOS) in inflammatory and tissue cells. NO is an effector molecule in innate immunity, and it also has regulatory and pro-inflammatory/destructive effect...

Full description

Bibliographic Details
Main Authors: Tiina Leppänen, Riku Korhonen, Mirka Laavola, Riina Nieminen, Raimo K Tuominen, Eeva Moilanen
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3541401?pdf=render
id doaj-f247c629e725479eb30c01a55d9a1338
record_format Article
spelling doaj-f247c629e725479eb30c01a55d9a13382020-11-25T00:11:44ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-0181e5274110.1371/journal.pone.0052741Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.Tiina LeppänenRiku KorhonenMirka LaavolaRiina NieminenRaimo K TuominenEeva MoilanenIn inflammation, pro-inflammatory cytokines and bacterial products induce the production of high amounts of NO by inducible nitric oxide synthase (iNOS) in inflammatory and tissue cells. NO is an effector molecule in innate immunity, and it also has regulatory and pro-inflammatory/destructive effects in the inflammatory process. Protein kinase Cδ (PKCδ) is an important signaling protein regulating B lymphocyte functions, but less is known about its effects in innate immunity and inflammatory gene expression. In the present study we investigated the role of PKCδ in the regulation of iNOS expression in inflammatory conditions. NO production and iNOS expression were induced by LPS or a combination of cytokines IFNγ, IL-1β, and TNFα. Down-regulation of PKCδ by siRNA and inhibition of PKCδ by rottlerin suppressed NO production and iNOS expression in activated macrophages and fibroblasts. PKCδ directed siRNA and inhibition of PKCδ by rottlerin suppressed also the expression of transcription factor IRF1, possibly through inhibition of STAT1 activation. Accordingly, down-regulation of IRF1 by siRNA reduced iNOS expression in response to inflammatory stimuli. In addition, inhibition of PKCδ showed anti-inflammatory effects in carrageenan induced paw inflammation in mice as did iNOS inhibitor L-NIL. These results suggest that inhibitors of PKCδ have anti-inflammatory effects in disease states complicated by enhanced NO production through iNOS pathway.http://europepmc.org/articles/PMC3541401?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Tiina Leppänen
Riku Korhonen
Mirka Laavola
Riina Nieminen
Raimo K Tuominen
Eeva Moilanen
spellingShingle Tiina Leppänen
Riku Korhonen
Mirka Laavola
Riina Nieminen
Raimo K Tuominen
Eeva Moilanen
Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.
PLoS ONE
author_facet Tiina Leppänen
Riku Korhonen
Mirka Laavola
Riina Nieminen
Raimo K Tuominen
Eeva Moilanen
author_sort Tiina Leppänen
title Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.
title_short Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.
title_full Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.
title_fullStr Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.
title_full_unstemmed Down-regulation of protein kinase Cδ inhibits inducible nitric oxide synthase expression through IRF1.
title_sort down-regulation of protein kinase cδ inhibits inducible nitric oxide synthase expression through irf1.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description In inflammation, pro-inflammatory cytokines and bacterial products induce the production of high amounts of NO by inducible nitric oxide synthase (iNOS) in inflammatory and tissue cells. NO is an effector molecule in innate immunity, and it also has regulatory and pro-inflammatory/destructive effects in the inflammatory process. Protein kinase Cδ (PKCδ) is an important signaling protein regulating B lymphocyte functions, but less is known about its effects in innate immunity and inflammatory gene expression. In the present study we investigated the role of PKCδ in the regulation of iNOS expression in inflammatory conditions. NO production and iNOS expression were induced by LPS or a combination of cytokines IFNγ, IL-1β, and TNFα. Down-regulation of PKCδ by siRNA and inhibition of PKCδ by rottlerin suppressed NO production and iNOS expression in activated macrophages and fibroblasts. PKCδ directed siRNA and inhibition of PKCδ by rottlerin suppressed also the expression of transcription factor IRF1, possibly through inhibition of STAT1 activation. Accordingly, down-regulation of IRF1 by siRNA reduced iNOS expression in response to inflammatory stimuli. In addition, inhibition of PKCδ showed anti-inflammatory effects in carrageenan induced paw inflammation in mice as did iNOS inhibitor L-NIL. These results suggest that inhibitors of PKCδ have anti-inflammatory effects in disease states complicated by enhanced NO production through iNOS pathway.
url http://europepmc.org/articles/PMC3541401?pdf=render
work_keys_str_mv AT tiinaleppanen downregulationofproteinkinasecdinhibitsinduciblenitricoxidesynthaseexpressionthroughirf1
AT rikukorhonen downregulationofproteinkinasecdinhibitsinduciblenitricoxidesynthaseexpressionthroughirf1
AT mirkalaavola downregulationofproteinkinasecdinhibitsinduciblenitricoxidesynthaseexpressionthroughirf1
AT riinanieminen downregulationofproteinkinasecdinhibitsinduciblenitricoxidesynthaseexpressionthroughirf1
AT raimoktuominen downregulationofproteinkinasecdinhibitsinduciblenitricoxidesynthaseexpressionthroughirf1
AT eevamoilanen downregulationofproteinkinasecdinhibitsinduciblenitricoxidesynthaseexpressionthroughirf1
_version_ 1725402509335330816