Konishi Mineko, Yanagisawa Shuichi
Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Yayoi 1-1-1, Bunkyo-ku, Tokyo 113-8657, Japan.
Plant J. 2008 Sep;55(5):821-31. doi: 10.1111/j.1365-313X.2008.03551.x. Epub 2008 May 9.
EIN3 is a key transcription factor in the signaling pathway of the plant hormone ethylene in Arabidopsis. Ethylene signaling suppresses the 26S proteasome-mediated proteolysis of EIN3, the accumulation of which induces ethylene-responsive gene expression. The proteolysis of EIN3 has been suggested to be mediated by the E3 ubiquitin ligase SCF(EBF1/2) that contains either of the two closely related F-box proteins, EBF1 or EBF2. Here, we demonstrate feedback regulation of ethylene signaling that results from the direct upregulation of the EBF2 gene by EIN3. Although EBF1 and EBF2 show comparable activities as repressors of EIN3-dependent transcription, our analysis of transgenic Arabidopsis plants has revealed that the EBF2 promoter, but not the EBF1 promoter, is activated by ethylene. Furthermore, the results of protoplast transient assays in vivo and electrophoretic mobility shift assays in vitro have revealed that EIN3 can bind and activate the EBF2 promoter, indicating that EIN3 modulates EBF2 gene expression in planta. An ebf2 mutant transformed with the EBF2 gene under the control of a mutant promoter in which the EIN3-binding site was disrupted still showed an ethylene hyper-responsive phenotype, indicating the physiological relevance of EIN3-mediated activation of the EBF2 gene in the downregulation of ethylene signaling. We show an additional finding that a sequence downstream of the EBF2 coding region is also involved in modulations of both the EBF2 expression level and sensitivity to ethylene. These results thus indicate that the fine-tuning of ethylene signaling involves the intricate regulation of EBF2 expression in Arabidopsis.
EIN3是拟南芥中植物激素乙烯信号通路中的关键转录因子。乙烯信号传导抑制EIN3的26S蛋白酶体介导的蛋白水解作用,EIN3的积累会诱导乙烯反应基因的表达。有人提出EIN3的蛋白水解作用是由含有两种密切相关的F-box蛋白EBF1或EBF2之一的E3泛素连接酶SCF(EBF1/2)介导的。在此,我们证明了乙烯信号传导的反馈调节,这是由EIN3直接上调EBF2基因所导致的。尽管EBF1和EBF2作为EIN3依赖性转录的抑制因子表现出相当的活性,但我们对转基因拟南芥植物的分析表明,EBF2启动子而非EBF1启动子可被乙烯激活。此外,体内原生质体瞬时分析和体外电泳迁移率变动分析结果表明,EIN3可以结合并激活EBF2启动子,这表明EIN3在植物中调节EBF2基因的表达。用EIN3结合位点被破坏的突变启动子控制下的EBF2基因转化的ebf2突变体仍然表现出乙烯超敏感表型,这表明EIN3介导的EBF2基因激活在乙烯信号下调中的生理相关性。我们还发现了另外一个现象,即EBF2编码区下游的一个序列也参与了EBF2表达水平和对乙烯敏感性的调节。因此,这些结果表明,乙烯信号的微调涉及拟南芥中EBF2表达的复杂调控。