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DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS

DExD/H-box helicases play essential roles in RNA metabolism, and emerging data suggests that they have additional functions in antiviral immunity across species. However, little is known about this evolutionarily conserved family in antiviral responses in lower species. Here, through isolation of po...

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Autores principales: Ruan, Jie, Cao, Yange, Ling, Tao, Li, Peiyi, Wu, Shengpeng, Peng, Dezhi, Wang, Yao, Jia, Xin, Chen, Shangwu, Xu, Anlong, Yuan, Shaochun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6759578/
https://www.ncbi.nlm.nih.gov/pubmed/31620127
http://dx.doi.org/10.3389/fimmu.2019.02202
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author Ruan, Jie
Cao, Yange
Ling, Tao
Li, Peiyi
Wu, Shengpeng
Peng, Dezhi
Wang, Yao
Jia, Xin
Chen, Shangwu
Xu, Anlong
Yuan, Shaochun
author_facet Ruan, Jie
Cao, Yange
Ling, Tao
Li, Peiyi
Wu, Shengpeng
Peng, Dezhi
Wang, Yao
Jia, Xin
Chen, Shangwu
Xu, Anlong
Yuan, Shaochun
author_sort Ruan, Jie
collection PubMed
description DExD/H-box helicases play essential roles in RNA metabolism, and emerging data suggests that they have additional functions in antiviral immunity across species. However, little is known about this evolutionarily conserved family in antiviral responses in lower species. Here, through isolation of poly(I:C)-binding proteins in amphioxus, an extant basal chordate, we found that DExD/H-box helicases DHX9, DHX15, and DDX23 are responsible for cytoplasmic dsRNA detection in amphioxus. Since the antiviral roles of DDX23 have not been characterized in mammals, we performed further poly(I:C) pull-down assays and found that human DDX23 binds to LMW poly(I:C) through its N-terminal region, suggesting that DDX23 is an evolutionarily conserved dsRNA sensor. Knockdown of human DDX23 enhanced the replication of VSV and reduced the activation of the NF-κB and IRF3. Moreover, when stimulated with poly(I:C) or VSV, human DDX23 translocated from the nucleus to the cytoplasm and formed complexes with TRIF or MAVS to initiate downstream signaling. Collectively, this comparative immunological study not only defined DDX23 as an emerging nuclear pattern recognition receptor (PRR) for the innate sensing of an RNA virus, but also extended the essential role of the DExD/H helicase family in viral RNA sensing from mammals to basal chordates.
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spelling pubmed-67595782019-10-16 DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS Ruan, Jie Cao, Yange Ling, Tao Li, Peiyi Wu, Shengpeng Peng, Dezhi Wang, Yao Jia, Xin Chen, Shangwu Xu, Anlong Yuan, Shaochun Front Immunol Immunology DExD/H-box helicases play essential roles in RNA metabolism, and emerging data suggests that they have additional functions in antiviral immunity across species. However, little is known about this evolutionarily conserved family in antiviral responses in lower species. Here, through isolation of poly(I:C)-binding proteins in amphioxus, an extant basal chordate, we found that DExD/H-box helicases DHX9, DHX15, and DDX23 are responsible for cytoplasmic dsRNA detection in amphioxus. Since the antiviral roles of DDX23 have not been characterized in mammals, we performed further poly(I:C) pull-down assays and found that human DDX23 binds to LMW poly(I:C) through its N-terminal region, suggesting that DDX23 is an evolutionarily conserved dsRNA sensor. Knockdown of human DDX23 enhanced the replication of VSV and reduced the activation of the NF-κB and IRF3. Moreover, when stimulated with poly(I:C) or VSV, human DDX23 translocated from the nucleus to the cytoplasm and formed complexes with TRIF or MAVS to initiate downstream signaling. Collectively, this comparative immunological study not only defined DDX23 as an emerging nuclear pattern recognition receptor (PRR) for the innate sensing of an RNA virus, but also extended the essential role of the DExD/H helicase family in viral RNA sensing from mammals to basal chordates. Frontiers Media S.A. 2019-09-18 /pmc/articles/PMC6759578/ /pubmed/31620127 http://dx.doi.org/10.3389/fimmu.2019.02202 Text en Copyright © 2019 Ruan, Cao, Ling, Li, Wu, Peng, Wang, Jia, Chen, Xu and Yuan. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Ruan, Jie
Cao, Yange
Ling, Tao
Li, Peiyi
Wu, Shengpeng
Peng, Dezhi
Wang, Yao
Jia, Xin
Chen, Shangwu
Xu, Anlong
Yuan, Shaochun
DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS
title DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS
title_full DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS
title_fullStr DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS
title_full_unstemmed DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS
title_short DDX23, an Evolutionary Conserved dsRNA Sensor, Participates in Innate Antiviral Responses by Pairing With TRIF or MAVS
title_sort ddx23, an evolutionary conserved dsrna sensor, participates in innate antiviral responses by pairing with trif or mavs
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6759578/
https://www.ncbi.nlm.nih.gov/pubmed/31620127
http://dx.doi.org/10.3389/fimmu.2019.02202
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