Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.

The Arabidopsis thaliana transcription factor DEHYDRATION-RESPONSIVE ELEMENT-BINDING PROTEIN2A (DREB2A) controls the expression of many genes involved in the plant's response to dehydration and heat stress. Despite the significance of post-translational regulation in DREB2A activation, the mech...

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Main Authors: Kyoko Morimoto, Junya Mizoi, Feng Qin, June-Sik Kim, Hikaru Sato, Yuriko Osakabe, Kazuo Shinozaki, Kazuko Yamaguchi-Shinozaki
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2013-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3871162?pdf=render
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spelling doaj-70956207674e4ee7b7074e564320d4992020-11-25T01:45:20ZengPublic Library of Science (PLoS)PLoS ONE1932-62032013-01-01812e8045710.1371/journal.pone.0080457Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.Kyoko MorimotoJunya MizoiFeng QinJune-Sik KimHikaru SatoYuriko OsakabeKazuo ShinozakiKazuko Yamaguchi-ShinozakiThe Arabidopsis thaliana transcription factor DEHYDRATION-RESPONSIVE ELEMENT-BINDING PROTEIN2A (DREB2A) controls the expression of many genes involved in the plant's response to dehydration and heat stress. Despite the significance of post-translational regulation in DREB2A activation, the mechanism underlying this activation remains unclear. Here, with the aid of a newly produced antibody against DREB2A, we characterized the regulation of DREB2A stability in plants exposed to stress stimuli. Endogenous DREB2A accumulated in wild-type Arabidopsis plants subjected to dehydration and heat stress. A degradation assay using Arabidopsis T87 suspension-cultured cells revealed that DREB2A protein degradation was inhibited at high temperatures. The proteasome-dependent degradation of DREB2A required the import of this protein into the nucleus. The E3 ligases DRIP1 and DRIP2 were involved in this process under both normal and stressful conditions; however, other E3 ligases may have also been involved, at least during the late stages of the heat stress response. Although the constitutive expression of DREB2A resulted in an overproduction of DREB2A and enhanced target gene induction during stress in transgenic plants, the accumulation of DREB2A caused by proteasome inhibitors did not induce target gene expression. Thus, the stabilization of DREB2A is important but not sufficient to induce target gene expression; further activation processes are required.http://europepmc.org/articles/PMC3871162?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kyoko Morimoto
Junya Mizoi
Feng Qin
June-Sik Kim
Hikaru Sato
Yuriko Osakabe
Kazuo Shinozaki
Kazuko Yamaguchi-Shinozaki
spellingShingle Kyoko Morimoto
Junya Mizoi
Feng Qin
June-Sik Kim
Hikaru Sato
Yuriko Osakabe
Kazuo Shinozaki
Kazuko Yamaguchi-Shinozaki
Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.
PLoS ONE
author_facet Kyoko Morimoto
Junya Mizoi
Feng Qin
June-Sik Kim
Hikaru Sato
Yuriko Osakabe
Kazuo Shinozaki
Kazuko Yamaguchi-Shinozaki
author_sort Kyoko Morimoto
title Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.
title_short Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.
title_full Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.
title_fullStr Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.
title_full_unstemmed Stabilization of Arabidopsis DREB2A is required but not sufficient for the induction of target genes under conditions of stress.
title_sort stabilization of arabidopsis dreb2a is required but not sufficient for the induction of target genes under conditions of stress.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2013-01-01
description The Arabidopsis thaliana transcription factor DEHYDRATION-RESPONSIVE ELEMENT-BINDING PROTEIN2A (DREB2A) controls the expression of many genes involved in the plant's response to dehydration and heat stress. Despite the significance of post-translational regulation in DREB2A activation, the mechanism underlying this activation remains unclear. Here, with the aid of a newly produced antibody against DREB2A, we characterized the regulation of DREB2A stability in plants exposed to stress stimuli. Endogenous DREB2A accumulated in wild-type Arabidopsis plants subjected to dehydration and heat stress. A degradation assay using Arabidopsis T87 suspension-cultured cells revealed that DREB2A protein degradation was inhibited at high temperatures. The proteasome-dependent degradation of DREB2A required the import of this protein into the nucleus. The E3 ligases DRIP1 and DRIP2 were involved in this process under both normal and stressful conditions; however, other E3 ligases may have also been involved, at least during the late stages of the heat stress response. Although the constitutive expression of DREB2A resulted in an overproduction of DREB2A and enhanced target gene induction during stress in transgenic plants, the accumulation of DREB2A caused by proteasome inhibitors did not induce target gene expression. Thus, the stabilization of DREB2A is important but not sufficient to induce target gene expression; further activation processes are required.
url http://europepmc.org/articles/PMC3871162?pdf=render
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