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Fine-tuning of IPA1 transactivation activity by E3 ligase IPI7-mediated non-proteolytic K29-ubiquitination during Magnaporthe oryzae infection
by
Xu, Li
, Wang, Wen-Ming
, Li, Jiayang
, Li, Weitao
, Song, Li
, Fan, Jing
, He, Min
, Xiong, Qing
, Qin, Peng
, Li, Yan
, Li, Ting
, Yin, Junjie
, Chen, Xuewei
, Lu, Xiang
, Sun, Changhui
, Li, Shigui
, Shi, Hui
, Tang, Yongyan
, Yu, Hong
, Wang, Jing
, Wang, Long
, Hou, Qingqing
, Chen, Xiaoqiong
, Yi, Hong
, Zhu, Xiaobo
, Zhao, Zhangjie
, Tong, Huimin
in
38
/ 38/1
/ 38/111
/ 38/77
/ 45
/ 631/337/458
/ 631/449/1659
/ 631/449/2169
/ Amino acids
/ Ascomycota
/ Crop yield
/ Disease resistance
/ Gene Expression Regulation, Plant
/ Humanities and Social Sciences
/ Immune response
/ Immune system
/ Infections
/ Magnaporthe oryzae
/ multidisciplinary
/ Oryza - genetics
/ Oryza - metabolism
/ Oryza - microbiology
/ Phosphorylation
/ Plant Diseases - microbiology
/ Plant immunity
/ Plant Immunity - genetics
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Proteolysis
/ Rice
/ Science
/ Science (multidisciplinary)
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Transcriptional Activation
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - genetics
/ Ubiquitin-Protein Ligases - metabolism
/ Ubiquitination
2024
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Fine-tuning of IPA1 transactivation activity by E3 ligase IPI7-mediated non-proteolytic K29-ubiquitination during Magnaporthe oryzae infection
by
Xu, Li
, Wang, Wen-Ming
, Li, Jiayang
, Li, Weitao
, Song, Li
, Fan, Jing
, He, Min
, Xiong, Qing
, Qin, Peng
, Li, Yan
, Li, Ting
, Yin, Junjie
, Chen, Xuewei
, Lu, Xiang
, Sun, Changhui
, Li, Shigui
, Shi, Hui
, Tang, Yongyan
, Yu, Hong
, Wang, Jing
, Wang, Long
, Hou, Qingqing
, Chen, Xiaoqiong
, Yi, Hong
, Zhu, Xiaobo
, Zhao, Zhangjie
, Tong, Huimin
in
38
/ 38/1
/ 38/111
/ 38/77
/ 45
/ 631/337/458
/ 631/449/1659
/ 631/449/2169
/ Amino acids
/ Ascomycota
/ Crop yield
/ Disease resistance
/ Gene Expression Regulation, Plant
/ Humanities and Social Sciences
/ Immune response
/ Immune system
/ Infections
/ Magnaporthe oryzae
/ multidisciplinary
/ Oryza - genetics
/ Oryza - metabolism
/ Oryza - microbiology
/ Phosphorylation
/ Plant Diseases - microbiology
/ Plant immunity
/ Plant Immunity - genetics
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Proteolysis
/ Rice
/ Science
/ Science (multidisciplinary)
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Transcriptional Activation
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - genetics
/ Ubiquitin-Protein Ligases - metabolism
/ Ubiquitination
2024
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Fine-tuning of IPA1 transactivation activity by E3 ligase IPI7-mediated non-proteolytic K29-ubiquitination during Magnaporthe oryzae infection
by
Xu, Li
, Wang, Wen-Ming
, Li, Jiayang
, Li, Weitao
, Song, Li
, Fan, Jing
, He, Min
, Xiong, Qing
, Qin, Peng
, Li, Yan
, Li, Ting
, Yin, Junjie
, Chen, Xuewei
, Lu, Xiang
, Sun, Changhui
, Li, Shigui
, Shi, Hui
, Tang, Yongyan
, Yu, Hong
, Wang, Jing
, Wang, Long
, Hou, Qingqing
, Chen, Xiaoqiong
, Yi, Hong
, Zhu, Xiaobo
, Zhao, Zhangjie
, Tong, Huimin
in
38
/ 38/1
/ 38/111
/ 38/77
/ 45
/ 631/337/458
/ 631/449/1659
/ 631/449/2169
/ Amino acids
/ Ascomycota
/ Crop yield
/ Disease resistance
/ Gene Expression Regulation, Plant
/ Humanities and Social Sciences
/ Immune response
/ Immune system
/ Infections
/ Magnaporthe oryzae
/ multidisciplinary
/ Oryza - genetics
/ Oryza - metabolism
/ Oryza - microbiology
/ Phosphorylation
/ Plant Diseases - microbiology
/ Plant immunity
/ Plant Immunity - genetics
/ Plant Proteins - genetics
/ Plant Proteins - metabolism
/ Proteolysis
/ Rice
/ Science
/ Science (multidisciplinary)
/ Transcription Factors - genetics
/ Transcription Factors - metabolism
/ Transcriptional Activation
/ Ubiquitin-protein ligase
/ Ubiquitin-Protein Ligases - genetics
/ Ubiquitin-Protein Ligases - metabolism
/ Ubiquitination
2024
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Fine-tuning of IPA1 transactivation activity by E3 ligase IPI7-mediated non-proteolytic K29-ubiquitination during Magnaporthe oryzae infection
Journal Article
Fine-tuning of IPA1 transactivation activity by E3 ligase IPI7-mediated non-proteolytic K29-ubiquitination during Magnaporthe oryzae infection
2024
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Overview
The Ideal Plant Architecture 1 (IPA1) transcription factor promotes rice yield and immunity through phosphorylation at its amino acid residue Ser163 as a switch. Although phosphorylated IPA1 mimic, IPA1(S163D), directly targets the promoter of immune response gene
WRKY45
, it cannot activate its expression. Here, we identified a co-activator of IPA1(S163D), a RING-finger E3 ligase IPA1 interactor 7 (IPI7), which fine-tunes the transcriptional activity of IPA1 to timely promote plant immunity and simultaneously maintain growth for yield. IPI7 interacts with IPA1 and promotes K29-polyubiquitination of IPA1 in vitro and in vivo. However, the stability of IPA1 protein is not affected by IPI7-mediated ubiquitination. The IPI7-promoted K29-polyubiquitination of IPA1 is induced by
Magnaporthe oryzae
infection and required for phosphorylated IPA1 to transactivate
WRKY45
expression for immune response but not for plain IPA1 to transactivate
DENSE AND ERECT PANICLES 1
(
DEP1
) expression for panicle development.
IPI7
knockout impairs IPA1-mediated immunity but not yield. Our study reveals that plants utilize non-proteolytic K29-ubiquitination as a response to pathogen infection to fine-tune IPA1 transactivation activity for promoting immunity.
In this paper, the E3 ubiquitin ligase IPI7 is found to fine-tune the transactivation activity of IPA1 through non-hydrolyzed K29-ubiquitination chain, thereby timely regulating rice disease resistance during
Magnaporthe oryzae
infection.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
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