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About:
Interleukin-17 suppresses grass carp reovirus infection in Ctenopharyngodon idellus kidney cells by activating NF-κB signaling
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schema:ScholarlyArticle
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covidontheweb.inria.fr
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Type:
Academic Article
research paper
schema:ScholarlyArticle
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type
Academic Article
research paper
schema:ScholarlyArticle
isDefinedBy
Covid-on-the-Web dataset
has title
Interleukin-17 suppresses grass carp reovirus infection in Ctenopharyngodon idellus kidney cells by activating NF-κB signaling
Creator
Tang, Jian
Zhu, Min
Cao, Guangli
Dai, Kun
Gong, Chengliang
Hu, Xiaolong
Liang, Zi
Pan, Jun
Song, Xuehong
Xue, Renyu
Zhang, Mingtian
Zhang, Xing
Zhang, Yunshan
Source
Elsevier; Medline; PMC
abstract
Abstract The grass carp accounts for a large proportion of aquacultural production in China, but the hemorrhagic disease caused by grass carp reovirus (GCRV) infection often causes huge economic losses to the industry. Interleukin 17 (IL-17) is an important cytokine that plays a critical role in the inflammatory and immune responses. Although IL-17 family members have been extensively studied in mammals, our knowledge of the activity of IL-17 proteins in teleosts in response to viral infection is still limited. In this study, the role of IL-17 in GCRV infection and its mechanism were investigated. The expression levels of IL-17AF1, IL-17AF2, and IL-17AF3 in Ctenopharyngodon idella kidney (CIK) cells gradually increased from 6 h after infection with GCRV. The nuclear translocation of p65, which acts in the NF-κB signaling pathway, was also increased by GCRV infection. The overexpression of IL-17AF1, IL-17AF2, or IL-17AF3 also promoted the nuclear translocation of p65 and the levels of phospho-IκBα in CIK cells, and reduced the expression of the viral structural protein VP7. An NF-κB signal inhibitor abolished the inhibition of GCRV infection by IL-17 proteins. These results suggested that the NF-κB signaling pathway was activated by the overexpression of IL-17 proteins, resulting in the inhibition of viral infection. In conclusion, in this study, we demonstrated that IL-17AF1, IL-17AF2, and IL-17AF3 acted as immune cytokines, exerting an antiviral effect by activating the NF-κB signaling pathway.
has issue date
2020-04-15
(
xsd:dateTime
)
bibo:doi
10.1016/j.aquaculture.2020.734969
bibo:pmid
32287459
has license
els-covid
sha1sum (hex)
388de2b2bf26d85e97af0b86cb1441f017559398
schema:url
https://doi.org/10.1016/j.aquaculture.2020.734969
resource representing a document's title
Interleukin-17 suppresses grass carp reovirus infection in Ctenopharyngodon idellus kidney cells by activating NF-κB signaling
has PubMed Central identifier
PMC7112052
has PubMed identifier
32287459
schema:publication
Aquaculture
resource representing a document's body
covid:388de2b2bf26d85e97af0b86cb1441f017559398#body_text
is
schema:about
of
named entity 'infection'
named entity 'carp'
named entity 'overexpression'
named entity 'kidney'
named entity 'These'
named entity 'Interleukin'
named entity 'NF-κB'
covid:arg/388de2b2bf26d85e97af0b86cb1441f017559398
named entity 'signal'
named entity 'NF-κB'
named entity 'suggested'
named entity 'Ctenopharyngodon idella'
named entity 'viral infection'
named entity 'gradually'
named entity 'activated'
named entity 'levels'
named entity 'losses'
named entity 'NF-κB'
named entity 'inhibition'
named entity 'acts'
named entity 'China'
named entity 'viral infection'
named entity 'cytokine'
named entity 'IL-17 family'
named entity 'antiviral effect'
named entity 'teleosts'
named entity 'mammals'
named entity 'immune responses'
named entity 'NF-κB'
named entity 'kidney cells'
named entity 'Interleukin-17'
named entity 'CIK'
named entity 'NF-κB'
named entity 'biological processes'
named entity 'conjugated'
named entity 'influenza virus'
named entity 'western blotting'
named entity 'signaling pathway'
named entity 'statistical significance'
named entity 'IL-17'
named entity 'teleosts'
named entity 'multiple sequence alignment'
named entity 'α-tubulin'
named entity 'CIK'
named entity 'signaling pathway'
named entity 'IL-17'
named entity 'IκB kinase'
named entity 'IL-17'
named entity 'IL-17 family'
named entity 'IL-17'
named entity 'regulate the expression'
named entity 'homodimers'
named entity 'lamprey'
named entity 'NF-κB'
named entity 'IκB kinase'
named entity 'IL-17A'
named entity 'antiviral'
named entity 'IL-17'
named entity 'innate immune response'
named entity 'DNA binding'
named entity 'antibody'
named entity 'signaling pathway'
named entity 'IκB'
named entity 'pathogens'
named entity 'antiviral'
named entity 'Ictalurus punctatus'
named entity 'antiviral activity'
named entity 'thymus'
named entity 'signaling pathways'
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