Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by Ubiquitination
Ubiquitination-mediated protein degradation plays a crucial role in the turnover of immune proteins through rapid alteration of protein levels. Specifically, the over-accumulation of immune proteins and consequent activation of immune responses in uninfected cells is prevented through degradation. P...
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doaj-a36ea7ae3be045a7b8f7b8f67c82a49d2020-11-24T22:34:20ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2017-10-01810.3389/fpls.2017.01682300500Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by UbiquitinationZhouqing He0Tingting Huang1Kevin Ao2Kevin Ao3Xiaofang Yan4Yan Huang5College of Life Sciences, Sichuan Agricultural University, Ya’an, ChinaCollege of Life Sciences, Sichuan Agricultural University, Ya’an, ChinaMichael Smith Laboratories, University of British Columbia, Vancouver, BC, CanadaDepartment of Botany, University of British Columbia, Vancouver, BC, CanadaCollege of Life Sciences, Sichuan Agricultural University, Ya’an, ChinaCollege of Life Sciences, Sichuan Agricultural University, Ya’an, ChinaUbiquitination-mediated protein degradation plays a crucial role in the turnover of immune proteins through rapid alteration of protein levels. Specifically, the over-accumulation of immune proteins and consequent activation of immune responses in uninfected cells is prevented through degradation. Protein post-translational modifications can influence and affect ubiquitination. There is accumulating evidence that suggests sumoylation, phosphorylation, and acetylation differentially affect the stability of immune-related proteins, so that control over the accumulation or degradation of proteins is fine-tuned. In this paper, we review the function and mechanism of sumoylation, phosphorylation, acetylation, and ubiquitination in plant disease resistance responses, focusing on how ubiquitination reacts with sumoylation, phosphorylation, and acetylation to regulate plant disease resistance signaling pathways. Future research directions are suggested in order to provide ideas for signaling pathway studies, and to advance the implementation of disease resistance proteins in economically important crops.http://journal.frontiersin.org/article/10.3389/fpls.2017.01682/fullplant immunitysumoylationphosphorylationacetylationubiquitinationubiquitin |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhouqing He Tingting Huang Kevin Ao Kevin Ao Xiaofang Yan Yan Huang |
spellingShingle |
Zhouqing He Tingting Huang Kevin Ao Kevin Ao Xiaofang Yan Yan Huang Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by Ubiquitination Frontiers in Plant Science plant immunity sumoylation phosphorylation acetylation ubiquitination ubiquitin |
author_facet |
Zhouqing He Tingting Huang Kevin Ao Kevin Ao Xiaofang Yan Yan Huang |
author_sort |
Zhouqing He |
title |
Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by Ubiquitination |
title_short |
Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by Ubiquitination |
title_full |
Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by Ubiquitination |
title_fullStr |
Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by Ubiquitination |
title_full_unstemmed |
Sumoylation, Phosphorylation, and Acetylation Fine-Tune the Turnover of Plant Immunity Components Mediated by Ubiquitination |
title_sort |
sumoylation, phosphorylation, and acetylation fine-tune the turnover of plant immunity components mediated by ubiquitination |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Plant Science |
issn |
1664-462X |
publishDate |
2017-10-01 |
description |
Ubiquitination-mediated protein degradation plays a crucial role in the turnover of immune proteins through rapid alteration of protein levels. Specifically, the over-accumulation of immune proteins and consequent activation of immune responses in uninfected cells is prevented through degradation. Protein post-translational modifications can influence and affect ubiquitination. There is accumulating evidence that suggests sumoylation, phosphorylation, and acetylation differentially affect the stability of immune-related proteins, so that control over the accumulation or degradation of proteins is fine-tuned. In this paper, we review the function and mechanism of sumoylation, phosphorylation, acetylation, and ubiquitination in plant disease resistance responses, focusing on how ubiquitination reacts with sumoylation, phosphorylation, and acetylation to regulate plant disease resistance signaling pathways. Future research directions are suggested in order to provide ideas for signaling pathway studies, and to advance the implementation of disease resistance proteins in economically important crops. |
topic |
plant immunity sumoylation phosphorylation acetylation ubiquitination ubiquitin |
url |
http://journal.frontiersin.org/article/10.3389/fpls.2017.01682/full |
work_keys_str_mv |
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