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The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant

The pseudorabies virus (PRV) TJ strain, a variant of PRV, induces more severe neurological symptoms and higher mortality in piglets and mice than the PRV SC strain isolated in 1980. However, the mechanism underlying responsible for the discrepancy in virulence between these strains remains unclear....

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Autores principales: Wu, Hongxia, Qi, Hansong, Wang, Bing, Li, Mingzhi, Qu, Liang, Li, Su, Luo, Yuzi, Li, Lian-Feng, Zheng, Guang-Lai, Qiu, Hua-Ji, Sun, Yuan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10652121/
https://www.ncbi.nlm.nih.gov/pubmed/37838171
http://dx.doi.org/10.1016/j.jbc.2023.105347
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author Wu, Hongxia
Qi, Hansong
Wang, Bing
Li, Mingzhi
Qu, Liang
Li, Su
Luo, Yuzi
Li, Lian-Feng
Zheng, Guang-Lai
Qiu, Hua-Ji
Sun, Yuan
author_facet Wu, Hongxia
Qi, Hansong
Wang, Bing
Li, Mingzhi
Qu, Liang
Li, Su
Luo, Yuzi
Li, Lian-Feng
Zheng, Guang-Lai
Qiu, Hua-Ji
Sun, Yuan
author_sort Wu, Hongxia
collection PubMed
description The pseudorabies virus (PRV) TJ strain, a variant of PRV, induces more severe neurological symptoms and higher mortality in piglets and mice than the PRV SC strain isolated in 1980. However, the mechanism underlying responsible for the discrepancy in virulence between these strains remains unclear. Our study investigated the differences in neurotropism between PRV TJ and PRV SC using both in vitro and in vivo models. We discovered that PRV TJ enters neural cells more efficiently than PRV SC. Furthermore, we found that PRV TJ has indistinguishable genomic DNA replication capability and axonal retrograde transport dynamics compared to the PRV SC. To gain deeper insights into the mechanisms underlying these differences, we constructed gene-interchanged chimeric virus constructs and assessed the affinity between envelope glycoprotein B, C, and D (gD) and corresponding receptors. Our findings confirmed that mutations in these envelope proteins, particularly gD, significantly contributed to the heightened attachment and penetration capabilities of PRV TJ. Our study revealed the critical importance of the gD(ΔR278/P279) and gD(V338A) in facilitating viral invasion. Furthermore, our observations indicated that mutations in envelope proteins have a more significant impact on viral invasion than on virulence in the mouse model. Our findings provide valuable insights into the roles of natural mutations on the PRV envelope glycoproteins in cell tropism, which sheds light on the relationship between cell tropism and clinical symptoms and offers clues about viral evolution.
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spelling pubmed-106521212023-10-12 The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant Wu, Hongxia Qi, Hansong Wang, Bing Li, Mingzhi Qu, Liang Li, Su Luo, Yuzi Li, Lian-Feng Zheng, Guang-Lai Qiu, Hua-Ji Sun, Yuan J Biol Chem Research Article The pseudorabies virus (PRV) TJ strain, a variant of PRV, induces more severe neurological symptoms and higher mortality in piglets and mice than the PRV SC strain isolated in 1980. However, the mechanism underlying responsible for the discrepancy in virulence between these strains remains unclear. Our study investigated the differences in neurotropism between PRV TJ and PRV SC using both in vitro and in vivo models. We discovered that PRV TJ enters neural cells more efficiently than PRV SC. Furthermore, we found that PRV TJ has indistinguishable genomic DNA replication capability and axonal retrograde transport dynamics compared to the PRV SC. To gain deeper insights into the mechanisms underlying these differences, we constructed gene-interchanged chimeric virus constructs and assessed the affinity between envelope glycoprotein B, C, and D (gD) and corresponding receptors. Our findings confirmed that mutations in these envelope proteins, particularly gD, significantly contributed to the heightened attachment and penetration capabilities of PRV TJ. Our study revealed the critical importance of the gD(ΔR278/P279) and gD(V338A) in facilitating viral invasion. Furthermore, our observations indicated that mutations in envelope proteins have a more significant impact on viral invasion than on virulence in the mouse model. Our findings provide valuable insights into the roles of natural mutations on the PRV envelope glycoproteins in cell tropism, which sheds light on the relationship between cell tropism and clinical symptoms and offers clues about viral evolution. American Society for Biochemistry and Molecular Biology 2023-10-12 /pmc/articles/PMC10652121/ /pubmed/37838171 http://dx.doi.org/10.1016/j.jbc.2023.105347 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Wu, Hongxia
Qi, Hansong
Wang, Bing
Li, Mingzhi
Qu, Liang
Li, Su
Luo, Yuzi
Li, Lian-Feng
Zheng, Guang-Lai
Qiu, Hua-Ji
Sun, Yuan
The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant
title The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant
title_full The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant
title_fullStr The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant
title_full_unstemmed The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant
title_short The mutations on the envelope glycoprotein D contribute to the enhanced neurotropism of the pseudorabies virus variant
title_sort mutations on the envelope glycoprotein d contribute to the enhanced neurotropism of the pseudorabies virus variant
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10652121/
https://www.ncbi.nlm.nih.gov/pubmed/37838171
http://dx.doi.org/10.1016/j.jbc.2023.105347
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