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The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling

Flavivirus RNA cap-methylation plays an important role in viral infection, proliferation, and escape from innate immunity. The methyltransferase (MTase) of the flavivirus NS5 protein catalyzes viral RNA methylation. The E218 amino acid of the NS5 protein MTase domain is one of the active sites of fl...

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Autores principales: Wu, Xuedong, Pan, Yuhong, Huang, Juan, Huang, Shanzhi, Wang, Mingshu, Chen, Shun, Liu, Mafeng, Zhu, Dekang, Zhao, Xinxin, Wu, Ying, Yang, Qiao, Zhang, Shaqiu, Ou, Xumin, Zhang, Ling, Liu, Yunya, Yu, Yanling, Gao, Qun, Mao, Sai, Sun, Di, Tian, Bin, Yin, Zhongqiong, Jing, Bo, Cheng, Anchun, Jia, Renyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9334331/
https://www.ncbi.nlm.nih.gov/pubmed/35901648
http://dx.doi.org/10.1016/j.psj.2022.102017
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author Wu, Xuedong
Pan, Yuhong
Huang, Juan
Huang, Shanzhi
Wang, Mingshu
Chen, Shun
Liu, Mafeng
Zhu, Dekang
Zhao, Xinxin
Wu, Ying
Yang, Qiao
Zhang, Shaqiu
Ou, Xumin
Zhang, Ling
Liu, Yunya
Yu, Yanling
Gao, Qun
Mao, Sai
Sun, Di
Tian, Bin
Yin, Zhongqiong
Jing, Bo
Cheng, Anchun
Jia, Renyong
author_facet Wu, Xuedong
Pan, Yuhong
Huang, Juan
Huang, Shanzhi
Wang, Mingshu
Chen, Shun
Liu, Mafeng
Zhu, Dekang
Zhao, Xinxin
Wu, Ying
Yang, Qiao
Zhang, Shaqiu
Ou, Xumin
Zhang, Ling
Liu, Yunya
Yu, Yanling
Gao, Qun
Mao, Sai
Sun, Di
Tian, Bin
Yin, Zhongqiong
Jing, Bo
Cheng, Anchun
Jia, Renyong
author_sort Wu, Xuedong
collection PubMed
description Flavivirus RNA cap-methylation plays an important role in viral infection, proliferation, and escape from innate immunity. The methyltransferase (MTase) of the flavivirus NS5 protein catalyzes viral RNA methylation. The E218 amino acid of the NS5 protein MTase domain is one of the active sites of flavivirus methyltransferase. In flaviviruses, the E218A mutation abolished 2’-O methylation activity and significantly reduced N-7 methylation activity. Tembusu virus (TMUV, genus Flavivirus) was a pathogen that caused neurological symptoms in ducklings and decreased egg production in laying ducks. In this study, we focused on a comprehensive understanding of the effects of the E218A mutation on TMUV characteristics and the host immune response. E218A mutation reduced TMUV replication and proliferation, but did not affect viral adsorption and entry. Based on a TMUV replicon system, we found that the E218A mutation impaired viral translation. In addition, E218A mutant virus might be more readily recognized by RIG-I-like receptors to activate the corresponding antiviral immune signaling than WT virus. Together, our data suggest that the E218A mutation of TMUV MTase domain impairs viral replication and translation and may activates RIG-I-like receptor signaling, ultimately leading to a reduction in viral proliferation.
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spelling pubmed-93343312022-07-30 The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling Wu, Xuedong Pan, Yuhong Huang, Juan Huang, Shanzhi Wang, Mingshu Chen, Shun Liu, Mafeng Zhu, Dekang Zhao, Xinxin Wu, Ying Yang, Qiao Zhang, Shaqiu Ou, Xumin Zhang, Ling Liu, Yunya Yu, Yanling Gao, Qun Mao, Sai Sun, Di Tian, Bin Yin, Zhongqiong Jing, Bo Cheng, Anchun Jia, Renyong Poult Sci IMMUNOLOGY, HEALTH AND DISEASE Flavivirus RNA cap-methylation plays an important role in viral infection, proliferation, and escape from innate immunity. The methyltransferase (MTase) of the flavivirus NS5 protein catalyzes viral RNA methylation. The E218 amino acid of the NS5 protein MTase domain is one of the active sites of flavivirus methyltransferase. In flaviviruses, the E218A mutation abolished 2’-O methylation activity and significantly reduced N-7 methylation activity. Tembusu virus (TMUV, genus Flavivirus) was a pathogen that caused neurological symptoms in ducklings and decreased egg production in laying ducks. In this study, we focused on a comprehensive understanding of the effects of the E218A mutation on TMUV characteristics and the host immune response. E218A mutation reduced TMUV replication and proliferation, but did not affect viral adsorption and entry. Based on a TMUV replicon system, we found that the E218A mutation impaired viral translation. In addition, E218A mutant virus might be more readily recognized by RIG-I-like receptors to activate the corresponding antiviral immune signaling than WT virus. Together, our data suggest that the E218A mutation of TMUV MTase domain impairs viral replication and translation and may activates RIG-I-like receptor signaling, ultimately leading to a reduction in viral proliferation. Elsevier 2022-06-20 /pmc/articles/PMC9334331/ /pubmed/35901648 http://dx.doi.org/10.1016/j.psj.2022.102017 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle IMMUNOLOGY, HEALTH AND DISEASE
Wu, Xuedong
Pan, Yuhong
Huang, Juan
Huang, Shanzhi
Wang, Mingshu
Chen, Shun
Liu, Mafeng
Zhu, Dekang
Zhao, Xinxin
Wu, Ying
Yang, Qiao
Zhang, Shaqiu
Ou, Xumin
Zhang, Ling
Liu, Yunya
Yu, Yanling
Gao, Qun
Mao, Sai
Sun, Di
Tian, Bin
Yin, Zhongqiong
Jing, Bo
Cheng, Anchun
Jia, Renyong
The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling
title The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling
title_full The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling
title_fullStr The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling
title_full_unstemmed The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling
title_short The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signaling
title_sort substitution at residue 218 of the ns5 protein methyltransferase domain of tembusu virus impairs viral replication and translation and may triggers rig-i-like receptor signaling
topic IMMUNOLOGY, HEALTH AND DISEASE
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9334331/
https://www.ncbi.nlm.nih.gov/pubmed/35901648
http://dx.doi.org/10.1016/j.psj.2022.102017
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