Cargando…

The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon

BACKGROUND: Nonstructural protein 1 (NS1) is a virulence factor encoded by influenza A virus (IAV) that is expressed in the nucleus and cytoplasm of host cells during the earliest stages of infection. NS1 is a multifunctional protein that plays an important role in virus replication, virulence and i...

Descripción completa

Detalles Bibliográficos
Autores principales: Cheng, Jinghua, Tao, Jie, Li, Benqiang, Shi, Ying, Liu, Huili
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6896355/
https://www.ncbi.nlm.nih.gov/pubmed/31805964
http://dx.doi.org/10.1186/s12985-019-1255-0
_version_ 1783476760454627328
author Cheng, Jinghua
Tao, Jie
Li, Benqiang
Shi, Ying
Liu, Huili
author_facet Cheng, Jinghua
Tao, Jie
Li, Benqiang
Shi, Ying
Liu, Huili
author_sort Cheng, Jinghua
collection PubMed
description BACKGROUND: Nonstructural protein 1 (NS1) is a virulence factor encoded by influenza A virus (IAV) that is expressed in the nucleus and cytoplasm of host cells during the earliest stages of infection. NS1 is a multifunctional protein that plays an important role in virus replication, virulence and inhibition of the host antiviral immune response. However, to date, the phosphorylation sites of NS1 have not been identified, and the relationship between phosphorylation and protein function has not been thoroughly elucidated. METHOD: In this study, potential phosphorylation sites in the swine influenza virus (SIV) NS1 protein were bioinformatically predicted and determined by Phos-tag SDS-PAGE analysis. To study the role of NS1 phosphorylation sites, we rescued NS1 mutants (Y73F and S83A) of A/swine/Shanghai/3/2014(H1N1) strain and compared their replication ability, cytokine production as well as the intracellular localization in cultured cells. Additionally, we used small interfering RNA (siRNA) assay to explore whether changes in the type I IFN response with dephosphorylation at positions 73 and 83 were mediated by the RIG-I pathway. RESULTS: We checked 18 predicted sites in 30 SIV NS1 genes to exclude strain-specific sites, covering H1N1, H1N2 and H3N2 subtypes and identified two phosphorylation sites Y73 and S83 in the H1N1 SIV protein by Phos-tag SDS-PAGE analysis. We found that dephosphorylation at positions 73 and 83 of the NS1 protein attenuated virus replication and reduced the ability of NS1 to antagonize IFN-β expression but had no effect on nuclear localization. Knockdown of RIG-I dramatically impaired the induction of IFN-β and ISG56 in NS1 Y73F or S83A mutant-infected cells, indicating that RIG-I plays a role in the IFN-β response upon rSIV NS1 Y73F and rSIV NS1 S83A infection. CONCLUSION: We first identified two functional phosphorylation sites in the H1N1 SIV protein: Y73 and S83. We found that dephosphorylation at positions 73 and 83 of the NS1 protein affected the antiviral state in the host cells, partly through the RIG-I pathway.
format Online
Article
Text
id pubmed-6896355
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-68963552019-12-11 The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon Cheng, Jinghua Tao, Jie Li, Benqiang Shi, Ying Liu, Huili Virol J Research BACKGROUND: Nonstructural protein 1 (NS1) is a virulence factor encoded by influenza A virus (IAV) that is expressed in the nucleus and cytoplasm of host cells during the earliest stages of infection. NS1 is a multifunctional protein that plays an important role in virus replication, virulence and inhibition of the host antiviral immune response. However, to date, the phosphorylation sites of NS1 have not been identified, and the relationship between phosphorylation and protein function has not been thoroughly elucidated. METHOD: In this study, potential phosphorylation sites in the swine influenza virus (SIV) NS1 protein were bioinformatically predicted and determined by Phos-tag SDS-PAGE analysis. To study the role of NS1 phosphorylation sites, we rescued NS1 mutants (Y73F and S83A) of A/swine/Shanghai/3/2014(H1N1) strain and compared their replication ability, cytokine production as well as the intracellular localization in cultured cells. Additionally, we used small interfering RNA (siRNA) assay to explore whether changes in the type I IFN response with dephosphorylation at positions 73 and 83 were mediated by the RIG-I pathway. RESULTS: We checked 18 predicted sites in 30 SIV NS1 genes to exclude strain-specific sites, covering H1N1, H1N2 and H3N2 subtypes and identified two phosphorylation sites Y73 and S83 in the H1N1 SIV protein by Phos-tag SDS-PAGE analysis. We found that dephosphorylation at positions 73 and 83 of the NS1 protein attenuated virus replication and reduced the ability of NS1 to antagonize IFN-β expression but had no effect on nuclear localization. Knockdown of RIG-I dramatically impaired the induction of IFN-β and ISG56 in NS1 Y73F or S83A mutant-infected cells, indicating that RIG-I plays a role in the IFN-β response upon rSIV NS1 Y73F and rSIV NS1 S83A infection. CONCLUSION: We first identified two functional phosphorylation sites in the H1N1 SIV protein: Y73 and S83. We found that dephosphorylation at positions 73 and 83 of the NS1 protein affected the antiviral state in the host cells, partly through the RIG-I pathway. BioMed Central 2019-12-05 /pmc/articles/PMC6896355/ /pubmed/31805964 http://dx.doi.org/10.1186/s12985-019-1255-0 Text en © The Author(s). 2019 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
Cheng, Jinghua
Tao, Jie
Li, Benqiang
Shi, Ying
Liu, Huili
The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon
title The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon
title_full The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon
title_fullStr The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon
title_full_unstemmed The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon
title_short The tyrosine 73 and serine 83 dephosphorylation of H1N1 swine influenza virus NS1 protein attenuates virus replication and induces high levels of beta interferon
title_sort tyrosine 73 and serine 83 dephosphorylation of h1n1 swine influenza virus ns1 protein attenuates virus replication and induces high levels of beta interferon
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6896355/
https://www.ncbi.nlm.nih.gov/pubmed/31805964
http://dx.doi.org/10.1186/s12985-019-1255-0
work_keys_str_mv AT chengjinghua thetyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT taojie thetyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT libenqiang thetyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT shiying thetyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT liuhuili thetyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT chengjinghua tyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT taojie tyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT libenqiang tyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT shiying tyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon
AT liuhuili tyrosine73andserine83dephosphorylationofh1n1swineinfluenzavirusns1proteinattenuatesvirusreplicationandinduceshighlevelsofbetainterferon