Cargando…

PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1

Cytosolic RNA sensing is a prerequisite for initiation of innate immune response against RNA viral pathogens. Signaling through RIG-I (retinoic acid–inducible gene I)–like receptors (RLRs) to TBK1 (Tank-binding kinase 1)/IKKε (IκB kinase ε) kinases is transduced by mitochondria-associated MAVS (mito...

Descripción completa

Detalles Bibliográficos
Autores principales: Xiang, Weiwen, Zhang, Qian, Lin, Xia, Wu, Shiying, Zhou, Yao, Meng, Fansen, Fan, Yunyun, Shen, Tao, Xiao, Mu, Xia, Zongping, Zou, Jian, Feng, Xin-Hua, Xu, Pinglong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Association for the Advancement of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4942338/
https://www.ncbi.nlm.nih.gov/pubmed/27419230
http://dx.doi.org/10.1126/sciadv.1501889
_version_ 1782442401509408768
author Xiang, Weiwen
Zhang, Qian
Lin, Xia
Wu, Shiying
Zhou, Yao
Meng, Fansen
Fan, Yunyun
Shen, Tao
Xiao, Mu
Xia, Zongping
Zou, Jian
Feng, Xin-Hua
Xu, Pinglong
author_facet Xiang, Weiwen
Zhang, Qian
Lin, Xia
Wu, Shiying
Zhou, Yao
Meng, Fansen
Fan, Yunyun
Shen, Tao
Xiao, Mu
Xia, Zongping
Zou, Jian
Feng, Xin-Hua
Xu, Pinglong
author_sort Xiang, Weiwen
collection PubMed
description Cytosolic RNA sensing is a prerequisite for initiation of innate immune response against RNA viral pathogens. Signaling through RIG-I (retinoic acid–inducible gene I)–like receptors (RLRs) to TBK1 (Tank-binding kinase 1)/IKKε (IκB kinase ε) kinases is transduced by mitochondria-associated MAVS (mitochondrial antiviral signaling protein). However, the precise mechanism of how MAVS-mediated TBK1/IKKε activation is strictly controlled still remains obscure. We reported that protein phosphatase magnesium-dependent 1A (PPM1A; also known as PP2Cα), depending on its catalytic ability, dampened the RLR-IRF3 (interferon regulatory factor 3) axis to silence cytosolic RNA sensing signaling. We demonstrated that PPM1A was an inherent partner of the TBK1/IKKε complex, targeted both MAVS and TBK1/IKKε for dephosphorylation, and thus disrupted MAVS-driven formation of signaling complex. Conversely, a high level of MAVS can dissociate the TBK1/PPM1A complex to override PPM1A-mediated inhibition. Loss of PPM1A through gene ablation in human embryonic kidney 293 cells and mouse primary macrophages enabled robustly enhanced antiviral responses. Consequently, Ppm1a(−/−) mice resisted to RNA virus attack, and transgenic zebrafish expressing PPM1A displayed profoundly increased RNA virus vulnerability. These findings identify PPM1A as the first known phosphatase of MAVS and elucidate the physiological function of PPM1A in antiviral immunity on whole animals.
format Online
Article
Text
id pubmed-4942338
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher American Association for the Advancement of Science
record_format MEDLINE/PubMed
spelling pubmed-49423382016-07-14 PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1 Xiang, Weiwen Zhang, Qian Lin, Xia Wu, Shiying Zhou, Yao Meng, Fansen Fan, Yunyun Shen, Tao Xiao, Mu Xia, Zongping Zou, Jian Feng, Xin-Hua Xu, Pinglong Sci Adv Research Articles Cytosolic RNA sensing is a prerequisite for initiation of innate immune response against RNA viral pathogens. Signaling through RIG-I (retinoic acid–inducible gene I)–like receptors (RLRs) to TBK1 (Tank-binding kinase 1)/IKKε (IκB kinase ε) kinases is transduced by mitochondria-associated MAVS (mitochondrial antiviral signaling protein). However, the precise mechanism of how MAVS-mediated TBK1/IKKε activation is strictly controlled still remains obscure. We reported that protein phosphatase magnesium-dependent 1A (PPM1A; also known as PP2Cα), depending on its catalytic ability, dampened the RLR-IRF3 (interferon regulatory factor 3) axis to silence cytosolic RNA sensing signaling. We demonstrated that PPM1A was an inherent partner of the TBK1/IKKε complex, targeted both MAVS and TBK1/IKKε for dephosphorylation, and thus disrupted MAVS-driven formation of signaling complex. Conversely, a high level of MAVS can dissociate the TBK1/PPM1A complex to override PPM1A-mediated inhibition. Loss of PPM1A through gene ablation in human embryonic kidney 293 cells and mouse primary macrophages enabled robustly enhanced antiviral responses. Consequently, Ppm1a(−/−) mice resisted to RNA virus attack, and transgenic zebrafish expressing PPM1A displayed profoundly increased RNA virus vulnerability. These findings identify PPM1A as the first known phosphatase of MAVS and elucidate the physiological function of PPM1A in antiviral immunity on whole animals. American Association for the Advancement of Science 2016-07-01 /pmc/articles/PMC4942338/ /pubmed/27419230 http://dx.doi.org/10.1126/sciadv.1501889 Text en Copyright © 2016, The Authors http://creativecommons.org/licenses/by-nc/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial license (http://creativecommons.org/licenses/by-nc/4.0/) , which permits use, distribution, and reproduction in any medium, so long as the resultant use is not for commercial advantage and provided the original work is properly cited.
spellingShingle Research Articles
Xiang, Weiwen
Zhang, Qian
Lin, Xia
Wu, Shiying
Zhou, Yao
Meng, Fansen
Fan, Yunyun
Shen, Tao
Xiao, Mu
Xia, Zongping
Zou, Jian
Feng, Xin-Hua
Xu, Pinglong
PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1
title PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1
title_full PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1
title_fullStr PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1
title_full_unstemmed PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1
title_short PPM1A silences cytosolic RNA sensing and antiviral defense through direct dephosphorylation of MAVS and TBK1
title_sort ppm1a silences cytosolic rna sensing and antiviral defense through direct dephosphorylation of mavs and tbk1
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4942338/
https://www.ncbi.nlm.nih.gov/pubmed/27419230
http://dx.doi.org/10.1126/sciadv.1501889
work_keys_str_mv AT xiangweiwen ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT zhangqian ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT linxia ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT wushiying ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT zhouyao ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT mengfansen ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT fanyunyun ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT shentao ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT xiaomu ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT xiazongping ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT zoujian ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT fengxinhua ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1
AT xupinglong ppm1asilencescytosolicrnasensingandantiviraldefensethroughdirectdephosphorylationofmavsandtbk1