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Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection

Viruses often usurp host machineries for their amplification, but it remains unclear if hosts may subvert virus proteins to regulate viral proliferation. Here, we show that the 17K protein, an important virulence factor conserved in barley yellow dwarf viruses (BYDVs) and related poleroviruses, is p...

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Autores principales: Jin, Huaibing, Han, Xinyun, Wang, Zhaohui, Xie, Yilin, Zhang, Kunpu, Zhao, Xiaoge, Wang, Lina, Yang, Jin, Liu, Huiyun, Ji, Xiang, Dong, Lingli, Zheng, Hongyuan, Hu, Weijuan, Liu, Yan, Wang, Xifeng, Zhou, Xueping, Zhang, Yijing, Qian, Weiqiang, Zheng, Wenming, Shen, Qianhua, Gou, Mingyue, Wang, Daowen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9475517/
https://www.ncbi.nlm.nih.gov/pubmed/35929182
http://dx.doi.org/10.15252/embj.2021110521
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author Jin, Huaibing
Han, Xinyun
Wang, Zhaohui
Xie, Yilin
Zhang, Kunpu
Zhao, Xiaoge
Wang, Lina
Yang, Jin
Liu, Huiyun
Ji, Xiang
Dong, Lingli
Zheng, Hongyuan
Hu, Weijuan
Liu, Yan
Wang, Xifeng
Zhou, Xueping
Zhang, Yijing
Qian, Weiqiang
Zheng, Wenming
Shen, Qianhua
Gou, Mingyue
Wang, Daowen
author_facet Jin, Huaibing
Han, Xinyun
Wang, Zhaohui
Xie, Yilin
Zhang, Kunpu
Zhao, Xiaoge
Wang, Lina
Yang, Jin
Liu, Huiyun
Ji, Xiang
Dong, Lingli
Zheng, Hongyuan
Hu, Weijuan
Liu, Yan
Wang, Xifeng
Zhou, Xueping
Zhang, Yijing
Qian, Weiqiang
Zheng, Wenming
Shen, Qianhua
Gou, Mingyue
Wang, Daowen
author_sort Jin, Huaibing
collection PubMed
description Viruses often usurp host machineries for their amplification, but it remains unclear if hosts may subvert virus proteins to regulate viral proliferation. Here, we show that the 17K protein, an important virulence factor conserved in barley yellow dwarf viruses (BYDVs) and related poleroviruses, is phosphorylated by host GRIK1‐SnRK1 kinases, with the phosphorylated 17K (P17K) capable of enhancing the abundance of virus‐derived small interfering RNAs (vsiRNAs) and thus antiviral RNAi. Furthermore, P17K interacts with barley small RNA‐degrading nuclease 1 (HvSDN1) and impedes HvSDN1‐catalyzed vsiRNA degradation. Additionally, P17K weakens the HvSDN1‐HvAGO1 interaction, thus hindering HvSDN1 from accessing and degrading HvAGO1‐carried vsiRNAs. Importantly, transgenic expression of 17K phosphomimetics (17K(5D)), or genome editing of SDN1, generates stable resistance to BYDV through elevating vsiRNA abundance. These data validate a novel mechanism that enhances antiviral RNAi through host subversion of a viral virulence protein to inhibit SDN1‐catalyzed vsiRNA degradation and suggest new ways for engineering BYDV‐resistant crops.
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spelling pubmed-94755172022-09-21 Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection Jin, Huaibing Han, Xinyun Wang, Zhaohui Xie, Yilin Zhang, Kunpu Zhao, Xiaoge Wang, Lina Yang, Jin Liu, Huiyun Ji, Xiang Dong, Lingli Zheng, Hongyuan Hu, Weijuan Liu, Yan Wang, Xifeng Zhou, Xueping Zhang, Yijing Qian, Weiqiang Zheng, Wenming Shen, Qianhua Gou, Mingyue Wang, Daowen EMBO J Articles Viruses often usurp host machineries for their amplification, but it remains unclear if hosts may subvert virus proteins to regulate viral proliferation. Here, we show that the 17K protein, an important virulence factor conserved in barley yellow dwarf viruses (BYDVs) and related poleroviruses, is phosphorylated by host GRIK1‐SnRK1 kinases, with the phosphorylated 17K (P17K) capable of enhancing the abundance of virus‐derived small interfering RNAs (vsiRNAs) and thus antiviral RNAi. Furthermore, P17K interacts with barley small RNA‐degrading nuclease 1 (HvSDN1) and impedes HvSDN1‐catalyzed vsiRNA degradation. Additionally, P17K weakens the HvSDN1‐HvAGO1 interaction, thus hindering HvSDN1 from accessing and degrading HvAGO1‐carried vsiRNAs. Importantly, transgenic expression of 17K phosphomimetics (17K(5D)), or genome editing of SDN1, generates stable resistance to BYDV through elevating vsiRNA abundance. These data validate a novel mechanism that enhances antiviral RNAi through host subversion of a viral virulence protein to inhibit SDN1‐catalyzed vsiRNA degradation and suggest new ways for engineering BYDV‐resistant crops. John Wiley and Sons Inc. 2022-08-05 /pmc/articles/PMC9475517/ /pubmed/35929182 http://dx.doi.org/10.15252/embj.2021110521 Text en © 2022 The Authors. Published under the terms of the CC BY NC ND 4.0 license https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is noncommercial and no modifications or adaptations are made.
spellingShingle Articles
Jin, Huaibing
Han, Xinyun
Wang, Zhaohui
Xie, Yilin
Zhang, Kunpu
Zhao, Xiaoge
Wang, Lina
Yang, Jin
Liu, Huiyun
Ji, Xiang
Dong, Lingli
Zheng, Hongyuan
Hu, Weijuan
Liu, Yan
Wang, Xifeng
Zhou, Xueping
Zhang, Yijing
Qian, Weiqiang
Zheng, Wenming
Shen, Qianhua
Gou, Mingyue
Wang, Daowen
Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection
title Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection
title_full Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection
title_fullStr Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection
title_full_unstemmed Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection
title_short Barley GRIK1‐SnRK1 kinases subvert a viral virulence protein to upregulate antiviral RNAi and inhibit infection
title_sort barley grik1‐snrk1 kinases subvert a viral virulence protein to upregulate antiviral rnai and inhibit infection
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9475517/
https://www.ncbi.nlm.nih.gov/pubmed/35929182
http://dx.doi.org/10.15252/embj.2021110521
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