Qiao Hong, Chang Katherine N, Yazaki Junshi, Ecker Joseph R
Plant Biology Laboratory, Salk Institute for Biological Studies, La Jolla, California 92037, USA.
Genes Dev. 2009 Feb 15;23(4):512-21. doi: 10.1101/gad.1765709. Epub 2009 Feb 4.
The gaseous plant hormone ethylene can trigger myriad physiological and morphological responses in plants. While many ethylene signaling pathway components have been identified and characterized, little is known about the function of the integral membrane protein ETHYLENE-INSENSITIVE2 (EIN2), a central regulator of all ethylene responses. Here, we demonstrate that Arabidopsis thaliana EIN2 is a protein with a short half-life that undergoes rapid proteasome-mediated protein turnover. Moreover, EIN2 protein accumulation is positively regulated by ethylene. We identified two F-box proteins, EIN2 TARGETING PROTEIN1 (ETP1) and EIN2 TARGETING PROTEIN2 (ETP2), that interact with the EIN2 C-terminal domain (EIN2-CEND), which is highly conserved and sufficient to activate most ethylene responses. Overexpression of ETP1 or ETP2 disrupts EIN2 protein accumulation, and these plants manifest a strong ethylene-insensitive phenotype. Furthermore, knocking down the levels of both ETP1 and ETP2 mRNAs using an artificial microRNA (amiRNA) leads to accumulation of EIN2 protein, resulting in plants that display constitutive ethylene response phenotypes. Finally, ethylene down-regulates ETP1 and ETP2 proteins, impairing their ability to interact with EIN2. Thus, these studies reveal that a complex interplay between ethylene, the regulation of ETP1/ETP2 F-box proteins, and subsequent targeting and degradation of EIN2 is essential for triggering ethylene responses in plants.
气态植物激素乙烯可引发植物体内无数的生理和形态反应。虽然已鉴定并表征了许多乙烯信号通路组分,但对于乙烯反应的核心调节因子——整合膜蛋白乙烯不敏感2(EIN2)的功能却知之甚少。在此,我们证明拟南芥EIN2是一种半衰期较短的蛋白质,会经历快速的蛋白酶体介导的蛋白质周转。此外,EIN2蛋白积累受到乙烯的正向调节。我们鉴定出了两种F-box蛋白,即EIN2靶向蛋白1(ETP1)和EIN2靶向蛋白2(ETP2),它们与EIN2的C末端结构域(EIN2-CEND)相互作用,该结构域高度保守且足以激活大多数乙烯反应。ETP1或ETP2的过表达会破坏EIN2蛋白积累,并且这些植物表现出强烈的乙烯不敏感表型。此外,使用人工微小RNA(amiRNA)敲低ETP1和ETP2的mRNA水平会导致EIN2蛋白积累,从而使植物表现出组成型乙烯反应表型。最后,乙烯下调ETP1和ETP2蛋白,削弱它们与EIN2相互作用的能力。因此,这些研究表明,乙烯、ETP1/ETP2 F-box蛋白的调节以及随后EIN2的靶向和降解之间的复杂相互作用对于触发植物中的乙烯反应至关重要。