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PMID: 26269953 已发表 · ppublish 英语

Posttranslational Modifications of the Master Transcriptional Regulator NPR1 Enable Dynamic but Tight Control of Plant Immune Responses.

Cell host & microbe ·第 18 卷 ·第 2 期 ·2016-05-02

Saleh Abdelaty, Withers John, Mohan Rajinikanth, Marqués Jorge, Gu Yangnan, Yan Shunping, Zavaliev Raul, Nomoto Mika, Tada Yasuomi, Dong Xinnian

摘要

NPR1, a master regulator of basal and systemic acquired resistance in plants, confers immunity through a transcriptional cascade, which includes transcription activators (e.g., TGA3) and repressors (e.g., WRKY70), leading to the massive induction of antimicrobial genes. How this single protein orchestrates genome-wide transcriptional reprogramming in response to immune stimulus remains a major question. Paradoxically, while NPR1 is essential for defense gene induction, its turnover appears to be required for this function, suggesting that NPR1 activity and degradation are dynamically regulated. Here we show that sumoylation of NPR1 by SUMO3 activates defense gene expression by switching NPR1's association with the WRKY transcription repressors to TGA transcription activators. Sumoylation also triggers NPR1 degradation, rendering the immune induction transient. SUMO modification of NPR1 is inhibited by phosphorylation at Ser55/Ser59, which keeps NPR1 stable and quiescent. Thus, posttranslational modifications enable dynamic but tight and precise control of plant immune responses.

文献信息
期刊
Cell host & microbe
期刊简称
Cell Host Microbe
发表日期
2016-05-02
收录日期
2015-08-14
更新日期
2016-11-22
语言
英语
国家/地区
United States
NLM ID
101302316
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