首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Arabidopsis EIN3-binding F-box 1 and 2 form ubiquitin-protein ligases that repress ethylene action and promote growth by directing EIN3 degradation
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Arabidopsis EIN3-binding F-box 1 and 2 form ubiquitin-protein ligases that repress ethylene action and promote growth by directing EIN3 degradation

机译:拟南芥EIN3结合F框1和2形成泛素蛋白连接酶,通过指导EIN3降解来抑制乙烯作用并促进生长

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Ubiquitination of various intracellular proteins by ubiquitin-protein ligases (or E3s) plays an essential role in eukaryotic cell regulation primarily through its ability to selectively target proteins for degradation by the 26S proteasome. Skp1, Cullin, F-box (SCF) complexes are one influential E3 class that use F-box proteins to deliver targets to a core ligase activity provided by the Skp1, Cullin, and Rbx1 subunits. Almost 700 F-box proteins can be found in Arabidopsis, indicating that SCF E3s likely play a pervasive role in plant physiology and development. Here, we describe the reverse genetic analysis of two F-box proteins, EBF1 and -2, that work coordinately in SCF complexes to repress ethylene action. Mutations in either gene cause hypersensitivity to exogenous ethylene and its precursor 1-aminocyclopropane-l-carboxylic acid. EBF1 and -2 interact directly with ethylene insensitive 3 (EIN3), a transcriptional regulator important for ethylene signaling. Levels of EIN3 are increased in mutants affecting either EBF1 or -2, suggesting that the corresponding SCF complexes work together in EIN3 breakdown. Surprisingly, double ebf1 ebf2 mutants display a substantial arrest of seedling growth and have elevated EIN3 levels, even in the absence of exogenous ethylene. Collectively, our results show that the SCFEBF1/EBF2-dependent ubiquitination and subsequent removal of EIN3 is critical not only for proper ethylene signaling but also for growth in plants.
机译:泛素蛋白连接酶(或E3s)对各种细胞内蛋白的泛素化作用主要是通过其选择性靶向蛋白质以被26S蛋白酶体降解的能力,在真核细胞调节中起重要作用。 Skp1,Cullin,F-box(SCF)复合物是一种有影响力的E3类,使用F-box蛋白将靶标传递至Skp1,Cullin和Rbx1亚基提供的核心连接酶活性。在拟南芥中可以发现近700种F-box蛋白,这表明SCF E3可能在植物生理学和发育中发挥普遍作用。在这里,我们描述了两个F-box蛋白EBF1和-2的反向遗传分析,它们在SCF配合物中协同起作用以抑制乙烯的作用。任一基因中的突变都会导致对外源乙烯及其前体1-氨基环丙烷-1-羧酸过敏。 EBF1和-2与乙烯不敏感3(EIN3)直接相互作用,乙烯不敏感3对乙烯信号传导很重要。 EIN3的水平在影响EBF1或-2的突变体中增加,表明相应的SCF复合体在EIN3分解中协同工作。出乎意料的是,即使没有外源乙烯,双重ebf1 ebf2突变体也显示出幼苗生长的实质停滞,并且EIN3水平升高。总体而言,我们的结果表明,依赖SCFEBF1 / EBF2的泛素化以及随后去除EIN3不仅对于适当的乙烯信号传导至关重要,而且对于植物的生长也至关重要。

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