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Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus

Serum amyloid A (SAA), an acute response phase protein (APP), is crucial for the innate immune response during pathogenic microorganisms' invasion. Marek's disease virus (MDV) is a highly oncogenic alphaherpesvirus that activates multiple innate immune molecules, including SAA, in the host...

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Autores principales: Yang, Jianhao, Yang, Kunmei, Wang, Kang, Zhou, Defang, Zhou, Jing, Du, Xusheng, Liu, Shenglong, Cheng, Ziqiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10194236/
https://www.ncbi.nlm.nih.gov/pubmed/36652973
http://dx.doi.org/10.1016/j.virusres.2023.199044
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author Yang, Jianhao
Yang, Kunmei
Wang, Kang
Zhou, Defang
Zhou, Jing
Du, Xusheng
Liu, Shenglong
Cheng, Ziqiang
author_facet Yang, Jianhao
Yang, Kunmei
Wang, Kang
Zhou, Defang
Zhou, Jing
Du, Xusheng
Liu, Shenglong
Cheng, Ziqiang
author_sort Yang, Jianhao
collection PubMed
description Serum amyloid A (SAA), an acute response phase protein (APP), is crucial for the innate immune response during pathogenic microorganisms' invasion. Marek's disease virus (MDV) is a highly oncogenic alphaherpesvirus that activates multiple innate immune molecules, including SAA, in the host during infection. However, the pathway through which SAA participates in MDV-induced host innate immunity remains unknown. The present study aimed to elucidate the pathway through which SAA exerts its anti-MDV function. We observed that MDV infection in vivo and in vitro significantly elevated SAA expression. Furthermore, through SAA overexpression and knockdown experiments, we demonstrated that SAA could inhibit MDV replication. Subsequently, we found that SAA activated Toll-Like Receptor 2/4 (TLR2/4) -mediated Interferon Beta (IFN-β) promoter activity and IFN regulatory factor 7 (IRF7) promoter activity. During MDV infection, SAA enhanced TLR2/4-mediated IFN-β signal transduction and messenger RNAs (mRNAs) expression of type I IFN (IFN-I) and interferon-stimulated genes (ISGs). Finally, TLR2/4 inhibitor OxPAPC inhibits the anti-MDV activity of SAA. These results demonstrated that SAA inhibits MDV replication and enhancing TLR2/4-mediated IFN-β signal transduction to promote IFNs and ISGs expression. This finding is the first to demonstrate the signaling pathway by which SAA exerts its anti-MDV function. It also provides new insights into the control of oncogenic herpesviruses from the perspective of acute response phase proteins.
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spelling pubmed-101942362023-05-19 Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus Yang, Jianhao Yang, Kunmei Wang, Kang Zhou, Defang Zhou, Jing Du, Xusheng Liu, Shenglong Cheng, Ziqiang Virus Res Article Serum amyloid A (SAA), an acute response phase protein (APP), is crucial for the innate immune response during pathogenic microorganisms' invasion. Marek's disease virus (MDV) is a highly oncogenic alphaherpesvirus that activates multiple innate immune molecules, including SAA, in the host during infection. However, the pathway through which SAA participates in MDV-induced host innate immunity remains unknown. The present study aimed to elucidate the pathway through which SAA exerts its anti-MDV function. We observed that MDV infection in vivo and in vitro significantly elevated SAA expression. Furthermore, through SAA overexpression and knockdown experiments, we demonstrated that SAA could inhibit MDV replication. Subsequently, we found that SAA activated Toll-Like Receptor 2/4 (TLR2/4) -mediated Interferon Beta (IFN-β) promoter activity and IFN regulatory factor 7 (IRF7) promoter activity. During MDV infection, SAA enhanced TLR2/4-mediated IFN-β signal transduction and messenger RNAs (mRNAs) expression of type I IFN (IFN-I) and interferon-stimulated genes (ISGs). Finally, TLR2/4 inhibitor OxPAPC inhibits the anti-MDV activity of SAA. These results demonstrated that SAA inhibits MDV replication and enhancing TLR2/4-mediated IFN-β signal transduction to promote IFNs and ISGs expression. This finding is the first to demonstrate the signaling pathway by which SAA exerts its anti-MDV function. It also provides new insights into the control of oncogenic herpesviruses from the perspective of acute response phase proteins. Elsevier 2023-01-15 /pmc/articles/PMC10194236/ /pubmed/36652973 http://dx.doi.org/10.1016/j.virusres.2023.199044 Text en © 2023 Published by Elsevier B.V. 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 Article
Yang, Jianhao
Yang, Kunmei
Wang, Kang
Zhou, Defang
Zhou, Jing
Du, Xusheng
Liu, Shenglong
Cheng, Ziqiang
Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus
title Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus
title_full Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus
title_fullStr Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus
title_full_unstemmed Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus
title_short Serum amyloid A regulates TLR2/4-mediated IFN-β signaling pathway against Marek's disease virus
title_sort serum amyloid a regulates tlr2/4-mediated ifn-β signaling pathway against marek's disease virus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10194236/
https://www.ncbi.nlm.nih.gov/pubmed/36652973
http://dx.doi.org/10.1016/j.virusres.2023.199044
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