Cargando…

The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge

Classical swine fever (CSF) is an economically important disease of pigs caused by classical swine fever virus (CSFV). The live attenuated vaccine C-strain (also called HCLV strain) against CSF was produced by multiple passages of a highly virulent strain in rabbits. However, the molecular determina...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Yongfeng, Yuan, Mengqi, Han, Yuying, Xie, Libao, Ma, Yuteng, Li, Su, Sun, Yuan, Luo, Yuzi, Li, Weike, Qiu, Hua-Ji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8791258/
https://www.ncbi.nlm.nih.gov/pubmed/34730400
http://dx.doi.org/10.1128/JVI.01768-21
_version_ 1784640165772263424
author Li, Yongfeng
Yuan, Mengqi
Han, Yuying
Xie, Libao
Ma, Yuteng
Li, Su
Sun, Yuan
Luo, Yuzi
Li, Weike
Qiu, Hua-Ji
author_facet Li, Yongfeng
Yuan, Mengqi
Han, Yuying
Xie, Libao
Ma, Yuteng
Li, Su
Sun, Yuan
Luo, Yuzi
Li, Weike
Qiu, Hua-Ji
author_sort Li, Yongfeng
collection PubMed
description Classical swine fever (CSF) is an economically important disease of pigs caused by classical swine fever virus (CSFV). The live attenuated vaccine C-strain (also called HCLV strain) against CSF was produced by multiple passages of a highly virulent strain in rabbits. However, the molecular determinants for its attenuation and protection remain unclear. In this study, we identified a unique glycosylation at position 986 ((986)NYT(988)) on the E2 glycoprotein Domain IV of C-strain but not ((986)NYA(988)) the highly virulent CSFV Shimen strain. We evaluated the infectivity, virulence, and protective efficacy of the C-strain-based mutant rHCLV-T988A lacking the glycosylation and Shimen strain mutant rShimen-A988T acquiring an additional glycosylation at position 986. rShimen-A988T showed a significantly decreased viral replication ability in SK6 cells, while rHCLV-T988A exhibited a growth kinetics indistinguishable from that of C-strain. Removal of the C-strain glycosylation site does not affect viral replication in rabbits and the attenuated phenotype in pigs. However, rShimen-A988T was attenuated and protected the pigs from a lethal challenge at 14 days postinoculation. In contrast, the rHCLV-T988A-inoculated pigs showed transient fever, a few clinical signs, and pathological changes in the spleens upon challenge with the Shimen strain. Mechanistic investigations revealed that the unique glycosylation at position 986 influences viral spreading, alters the formation of E2 homodimers, and leads to increased production of neutralizing antibodies. Collectively, our data for the first time demonstrate that the unique glycosylation at position 986 on the E2 glycoprotein is responsible for viral attenuation and protection. IMPORTANCE Viral glycoproteins involve in infectivity, virulence, and host immune responses. Deglycosylation on the E(rns), E1, or E2 glycoprotein of highly virulent classical swine fever virus (CSFV) attenuated viral virulence in pigs, indicating that the glycosylation contributes to the pathogenicity of the highly virulent strain. However, the effects of the glycosylation on the C-strain E2 glycoprotein on viral infectivity in cells, viral attenuation, and protection in pigs have not been elucidated. This study demonstrates the unique glycosylation at position 986 on the C-strain E2 glycoprotein. C-strain mutant removing the glycosylation at the site provides only partial protection against CSFV challenge. Remarkably, the addition of the glycan to E2 of the highly virulent Shimen strain attenuates the viral virulence and confers complete protection against the lethal challenge in pigs. Our findings provide a new insight into the contribution of the glycosylation to the virus attenuation and protection.
format Online
Article
Text
id pubmed-8791258
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Society for Microbiology
record_format MEDLINE/PubMed
spelling pubmed-87912582022-02-09 The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge Li, Yongfeng Yuan, Mengqi Han, Yuying Xie, Libao Ma, Yuteng Li, Su Sun, Yuan Luo, Yuzi Li, Weike Qiu, Hua-Ji J Virol Pathogenesis and Immunity Classical swine fever (CSF) is an economically important disease of pigs caused by classical swine fever virus (CSFV). The live attenuated vaccine C-strain (also called HCLV strain) against CSF was produced by multiple passages of a highly virulent strain in rabbits. However, the molecular determinants for its attenuation and protection remain unclear. In this study, we identified a unique glycosylation at position 986 ((986)NYT(988)) on the E2 glycoprotein Domain IV of C-strain but not ((986)NYA(988)) the highly virulent CSFV Shimen strain. We evaluated the infectivity, virulence, and protective efficacy of the C-strain-based mutant rHCLV-T988A lacking the glycosylation and Shimen strain mutant rShimen-A988T acquiring an additional glycosylation at position 986. rShimen-A988T showed a significantly decreased viral replication ability in SK6 cells, while rHCLV-T988A exhibited a growth kinetics indistinguishable from that of C-strain. Removal of the C-strain glycosylation site does not affect viral replication in rabbits and the attenuated phenotype in pigs. However, rShimen-A988T was attenuated and protected the pigs from a lethal challenge at 14 days postinoculation. In contrast, the rHCLV-T988A-inoculated pigs showed transient fever, a few clinical signs, and pathological changes in the spleens upon challenge with the Shimen strain. Mechanistic investigations revealed that the unique glycosylation at position 986 influences viral spreading, alters the formation of E2 homodimers, and leads to increased production of neutralizing antibodies. Collectively, our data for the first time demonstrate that the unique glycosylation at position 986 on the E2 glycoprotein is responsible for viral attenuation and protection. IMPORTANCE Viral glycoproteins involve in infectivity, virulence, and host immune responses. Deglycosylation on the E(rns), E1, or E2 glycoprotein of highly virulent classical swine fever virus (CSFV) attenuated viral virulence in pigs, indicating that the glycosylation contributes to the pathogenicity of the highly virulent strain. However, the effects of the glycosylation on the C-strain E2 glycoprotein on viral infectivity in cells, viral attenuation, and protection in pigs have not been elucidated. This study demonstrates the unique glycosylation at position 986 on the C-strain E2 glycoprotein. C-strain mutant removing the glycosylation at the site provides only partial protection against CSFV challenge. Remarkably, the addition of the glycan to E2 of the highly virulent Shimen strain attenuates the viral virulence and confers complete protection against the lethal challenge in pigs. Our findings provide a new insight into the contribution of the glycosylation to the virus attenuation and protection. American Society for Microbiology 2022-01-26 /pmc/articles/PMC8791258/ /pubmed/34730400 http://dx.doi.org/10.1128/JVI.01768-21 Text en Copyright © 2022 Li et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Pathogenesis and Immunity
Li, Yongfeng
Yuan, Mengqi
Han, Yuying
Xie, Libao
Ma, Yuteng
Li, Su
Sun, Yuan
Luo, Yuzi
Li, Weike
Qiu, Hua-Ji
The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge
title The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge
title_full The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge
title_fullStr The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge
title_full_unstemmed The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge
title_short The Unique Glycosylation at Position 986 on the E2 Glycoprotein of Classical Swine Fever Virus Is Responsible for Viral Attenuation and Protection against Lethal Challenge
title_sort unique glycosylation at position 986 on the e2 glycoprotein of classical swine fever virus is responsible for viral attenuation and protection against lethal challenge
topic Pathogenesis and Immunity
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8791258/
https://www.ncbi.nlm.nih.gov/pubmed/34730400
http://dx.doi.org/10.1128/JVI.01768-21
work_keys_str_mv AT liyongfeng theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT yuanmengqi theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT hanyuying theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT xielibao theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT mayuteng theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT lisu theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT sunyuan theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT luoyuzi theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT liweike theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT qiuhuaji theuniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT liyongfeng uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT yuanmengqi uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT hanyuying uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT xielibao uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT mayuteng uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT lisu uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT sunyuan uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT luoyuzi uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT liweike uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge
AT qiuhuaji uniqueglycosylationatposition986onthee2glycoproteinofclassicalswinefevervirusisresponsibleforviralattenuationandprotectionagainstlethalchallenge