Cargando…
A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection
Microglia are the primary cellular source of type I interferons (I-IFNs) in the brain upon neurotropic virus infection. Although the I-IFN-based antiviral innate immune response is crucial for eliminating viruses, overproduction led to immune disorders. Therefore, the relatively long-lasting I-IFNs...
Autores principales: | , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Ivyspring International Publisher
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8490526/ https://www.ncbi.nlm.nih.gov/pubmed/34646390 http://dx.doi.org/10.7150/thno.64880 |
_version_ | 1784578544138977280 |
---|---|
author | Wang, Yiliang Luo, Weisheng Huang, Lianzhou Xiao, Ji Song, Xiaowei Li, Feng Ma, Yuying Wang, Xiaohui Jin, Fujun Liu, Ping Zhu, Yexuan Kitazato, Kaio Wang, Yifei Ren, Zhe |
author_facet | Wang, Yiliang Luo, Weisheng Huang, Lianzhou Xiao, Ji Song, Xiaowei Li, Feng Ma, Yuying Wang, Xiaohui Jin, Fujun Liu, Ping Zhu, Yexuan Kitazato, Kaio Wang, Yifei Ren, Zhe |
author_sort | Wang, Yiliang |
collection | PubMed |
description | Microglia are the primary cellular source of type I interferons (I-IFNs) in the brain upon neurotropic virus infection. Although the I-IFN-based antiviral innate immune response is crucial for eliminating viruses, overproduction led to immune disorders. Therefore, the relatively long-lasting I-IFNs must be precisely controlled, but the regulatory mechanism for the innate antiviral response in microglia remains largely unknown. Long non-coding RNAs (lncRNAs) are being recognized as crucial factors in numerous diseases, but their regulatory roles in the innate antiviral response in microglia are undefined. Methods: The high-throughput RNA sequencing was performed to obtain differentially expressed lncRNAs (DELs) in primary microglia infected with or without the neurotropic herpes simplex virus type 1 (HSV-1). We selected four DELs ranked in the top 15 in basic level and their fold change induced by HSV-1, i.e., FPKM(HSV-1)/FPKM(Cells).We subsequently found a key lncRNA affecting the innate antiviral response of microglia significantly. We next used dual-luciferase reporter assays, bioinformatical tools, and truncation mutants of both lncRNA and targeted proteins to elucidate the downstream and upstream mechanism of action of lncRNA. Further, we established microglia-specific knock-in (KI) mice to investigate the role of lncRNA in vivo. Results: We identified a long intergenic non-coding RNA, linc-AhRA, involved in regulating the innate antiviral response in murine microglia. linc-AhRA is activated by aryl hydrocarbon receptor (AhR) and restricts I-IFN production in microglia upon neurotropic herpesvirus infection and innate immune stimulation. Mechanistically, linc-AhRA binds to both tripartite motif-containing 27 (TRIM27) and TANK-binding kinase 1 (TBK1) through its conserved 117nt fragment as a molecular scaffold to enhance TRIM27-TBK1 interaction. This interaction facilitates the TRIM27-mediated ubiquitination of TBK1 and results in ubiquitin-proteasome-dependent degradation of TBK1. Consequently, linc-AhRA suppresses I-IFN production through facilitating TBK1 degradation and limits the microglial innate immune response against neurotropic herpesvirus infection. Microglia-specific KI of linc-AhRA mice shows a weakened antiviral immune response upon neurotropic herpesvirus challenge due to a reduction of TBK1 in microglia. Conclusion: Our findings indicate that linc-AhRA is a negative regulator of I-IFN production in microglia to avoid excessive autoimmune responses. These findings uncover a previously unappreciated role for lncRNA conserved fragments in the innate antiviral response, providing a strong foundation for developing nucleotide drugs based on conserved functional fragments within lncRNAs. |
format | Online Article Text |
id | pubmed-8490526 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Ivyspring International Publisher |
record_format | MEDLINE/PubMed |
spelling | pubmed-84905262021-10-12 A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection Wang, Yiliang Luo, Weisheng Huang, Lianzhou Xiao, Ji Song, Xiaowei Li, Feng Ma, Yuying Wang, Xiaohui Jin, Fujun Liu, Ping Zhu, Yexuan Kitazato, Kaio Wang, Yifei Ren, Zhe Theranostics Research Paper Microglia are the primary cellular source of type I interferons (I-IFNs) in the brain upon neurotropic virus infection. Although the I-IFN-based antiviral innate immune response is crucial for eliminating viruses, overproduction led to immune disorders. Therefore, the relatively long-lasting I-IFNs must be precisely controlled, but the regulatory mechanism for the innate antiviral response in microglia remains largely unknown. Long non-coding RNAs (lncRNAs) are being recognized as crucial factors in numerous diseases, but their regulatory roles in the innate antiviral response in microglia are undefined. Methods: The high-throughput RNA sequencing was performed to obtain differentially expressed lncRNAs (DELs) in primary microglia infected with or without the neurotropic herpes simplex virus type 1 (HSV-1). We selected four DELs ranked in the top 15 in basic level and their fold change induced by HSV-1, i.e., FPKM(HSV-1)/FPKM(Cells).We subsequently found a key lncRNA affecting the innate antiviral response of microglia significantly. We next used dual-luciferase reporter assays, bioinformatical tools, and truncation mutants of both lncRNA and targeted proteins to elucidate the downstream and upstream mechanism of action of lncRNA. Further, we established microglia-specific knock-in (KI) mice to investigate the role of lncRNA in vivo. Results: We identified a long intergenic non-coding RNA, linc-AhRA, involved in regulating the innate antiviral response in murine microglia. linc-AhRA is activated by aryl hydrocarbon receptor (AhR) and restricts I-IFN production in microglia upon neurotropic herpesvirus infection and innate immune stimulation. Mechanistically, linc-AhRA binds to both tripartite motif-containing 27 (TRIM27) and TANK-binding kinase 1 (TBK1) through its conserved 117nt fragment as a molecular scaffold to enhance TRIM27-TBK1 interaction. This interaction facilitates the TRIM27-mediated ubiquitination of TBK1 and results in ubiquitin-proteasome-dependent degradation of TBK1. Consequently, linc-AhRA suppresses I-IFN production through facilitating TBK1 degradation and limits the microglial innate immune response against neurotropic herpesvirus infection. Microglia-specific KI of linc-AhRA mice shows a weakened antiviral immune response upon neurotropic herpesvirus challenge due to a reduction of TBK1 in microglia. Conclusion: Our findings indicate that linc-AhRA is a negative regulator of I-IFN production in microglia to avoid excessive autoimmune responses. These findings uncover a previously unappreciated role for lncRNA conserved fragments in the innate antiviral response, providing a strong foundation for developing nucleotide drugs based on conserved functional fragments within lncRNAs. Ivyspring International Publisher 2021-09-21 /pmc/articles/PMC8490526/ /pubmed/34646390 http://dx.doi.org/10.7150/thno.64880 Text en © The author(s) https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions. |
spellingShingle | Research Paper Wang, Yiliang Luo, Weisheng Huang, Lianzhou Xiao, Ji Song, Xiaowei Li, Feng Ma, Yuying Wang, Xiaohui Jin, Fujun Liu, Ping Zhu, Yexuan Kitazato, Kaio Wang, Yifei Ren, Zhe A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection |
title | A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection |
title_full | A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection |
title_fullStr | A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection |
title_full_unstemmed | A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection |
title_short | A novel lncRNA linc-AhRA negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection |
title_sort | novel lncrna linc-ahra negatively regulates innate antiviral response in murine microglia upon neurotropic herpesvirus infection |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8490526/ https://www.ncbi.nlm.nih.gov/pubmed/34646390 http://dx.doi.org/10.7150/thno.64880 |
work_keys_str_mv | AT wangyiliang anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT luoweisheng anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT huanglianzhou anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT xiaoji anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT songxiaowei anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT lifeng anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT mayuying anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT wangxiaohui anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT jinfujun anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT liuping anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT zhuyexuan anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT kitazatokaio anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT wangyifei anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT renzhe anovellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT wangyiliang novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT luoweisheng novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT huanglianzhou novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT xiaoji novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT songxiaowei novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT lifeng novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT mayuying novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT wangxiaohui novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT jinfujun novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT liuping novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT zhuyexuan novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT kitazatokaio novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT wangyifei novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection AT renzhe novellncrnalincahranegativelyregulatesinnateantiviralresponseinmurinemicrogliauponneurotropicherpesvirusinfection |