ArabidopsisDREB2A-Interacting Proteins Function as RING E3 Ligases and Negatively Regulate Plant Drought Stress–Responsive Gene Expression

生物 拟南芥 泛素连接酶 基因 基因表达 泛素 突变体 细胞生物学 转录因子 拟南芥 蛋白酶体 基因表达调控 F盒蛋白 遗传学 分子生物学
作者
Feng Qin,Yoh Sakuma,Lam‐Son Phan Tran,Kyonoshin Maruyama,Satoshi Kidokoro,Yasunari Fujita,Miki Fujita,Taishi Umezawa,Yoriko Sawano,Ken‐ichi Miyazono,Masaru Tanokura,Kazuo Shinozaki,Kazuko Yamaguchi‐Shinozaki
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:20 (6): 1693-1707 被引量:492
标识
DOI:10.1105/tpc.107.057380
摘要

Abstract The DEHYDRATION-RESPONSIVE ELEMENT BINDING PROTEIN2A (DREB2A) transcription factor controls water deficit–inducible gene expression and requires posttranslational modification for its activation. The activation mechanism is not well understood; however, the stability of this protein in the nucleus was recently found to be important for its activation. Here, we report the isolation of Arabidopsis thaliana DREB2A-INTERACTING PROTEIN1 (DRIP1) and DRIP2, C3HC4 RING domain–containing proteins that interact with the DREB2A protein in the nucleus. An in vitro ubiquitination assay showed that they function as E3 ubiquitin ligases and are capable of mediating DREB2A ubiquitination. Overexpression of DRIP1 in Arabidopsis delayed the expression of DREB2A-regulated drought-responsive genes. Drought-inducible gene expression was slightly enhanced in the single T-DNA mutants of drip1-1 and drip2-1. By contrast, significantly enhanced gene expression was revealed in the drip1 drip2 double mutant under dehydration stress. Collectively, these data imply that DRIP1 and DRIP2 function negatively in the response of plants to drought stress. Moreover, overexpression of full-length DREB2A protein was more stable in drip1-1 than in the wild-type background. These results suggest that DRIP1 and DRIP2 act as novel negative regulators in drought-responsive gene expression by targeting DREB2A to 26S proteasome proteolysis.
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