The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.

Adenoviral vectors (AdV) activate multiple signaling pathways associated with innate immune responses, including mitogen-activated protein kinases (MAPKs). In this study, we investigated how systemically-injected AdVs activate two MAPK pathways (p38 and ERK) and the contribution of these kinases to...

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Main Authors: Jeffrey S Smith, Zhili Xu, Jie Tian, Donna J Palmer, Philip Ng, Andrew P Byrnes
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3203151?pdf=render
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spelling doaj-3f998061cf594335bb2feac55e03cb512020-11-25T01:42:29ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-01610e2675510.1371/journal.pone.0026755The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.Jeffrey S SmithZhili XuJie TianDonna J PalmerPhilip NgAndrew P ByrnesAdenoviral vectors (AdV) activate multiple signaling pathways associated with innate immune responses, including mitogen-activated protein kinases (MAPKs). In this study, we investigated how systemically-injected AdVs activate two MAPK pathways (p38 and ERK) and the contribution of these kinases to AdV-induced cytokine and chemokine responses in mice. Mice were injected intravenously either with a helper-dependent Ad2 vector that does not express viral genes or transgenes, or with the Ad2 mutant ts1, which is defective in endosomal escape. We found that AdV induced rapid phosphorylation of p38 and ERK as well as a significant cytokine response, but ts1 failed to activate p38 or ERK and induced only a limited cytokine response. These results demonstrate that endosomal escape of virions is a critical step in the induction of these innate pathways and responses. We then examined the roles of p38 and ERK pathways in the innate cytokine response by administering specific kinase inhibitors to mice prior to AdV. The cytokine and chemokine response to AdV was only modestly suppressed by a p38 inhibitor, while an ERK inhibitor has mixed effects, lowering some cytokines and elevating others. Thus, even though p38 and ERK are rapidly activated after i.v. injection of AdV, cytokine and chemokine responses are mostly independent of these kinases.http://europepmc.org/articles/PMC3203151?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jeffrey S Smith
Zhili Xu
Jie Tian
Donna J Palmer
Philip Ng
Andrew P Byrnes
spellingShingle Jeffrey S Smith
Zhili Xu
Jie Tian
Donna J Palmer
Philip Ng
Andrew P Byrnes
The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.
PLoS ONE
author_facet Jeffrey S Smith
Zhili Xu
Jie Tian
Donna J Palmer
Philip Ng
Andrew P Byrnes
author_sort Jeffrey S Smith
title The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.
title_short The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.
title_full The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.
title_fullStr The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.
title_full_unstemmed The role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.
title_sort role of endosomal escape and mitogen-activated protein kinases in adenoviral activation of the innate immune response.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Adenoviral vectors (AdV) activate multiple signaling pathways associated with innate immune responses, including mitogen-activated protein kinases (MAPKs). In this study, we investigated how systemically-injected AdVs activate two MAPK pathways (p38 and ERK) and the contribution of these kinases to AdV-induced cytokine and chemokine responses in mice. Mice were injected intravenously either with a helper-dependent Ad2 vector that does not express viral genes or transgenes, or with the Ad2 mutant ts1, which is defective in endosomal escape. We found that AdV induced rapid phosphorylation of p38 and ERK as well as a significant cytokine response, but ts1 failed to activate p38 or ERK and induced only a limited cytokine response. These results demonstrate that endosomal escape of virions is a critical step in the induction of these innate pathways and responses. We then examined the roles of p38 and ERK pathways in the innate cytokine response by administering specific kinase inhibitors to mice prior to AdV. The cytokine and chemokine response to AdV was only modestly suppressed by a p38 inhibitor, while an ERK inhibitor has mixed effects, lowering some cytokines and elevating others. Thus, even though p38 and ERK are rapidly activated after i.v. injection of AdV, cytokine and chemokine responses are mostly independent of these kinases.
url http://europepmc.org/articles/PMC3203151?pdf=render
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