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首页> 外文期刊>The Plant Cell >The Arabidopsis EIN3 binding F-box proteins EBF1 and EBF2 have distinct but overlapping roles in ethylene signaling
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The Arabidopsis EIN3 binding F-box proteins EBF1 and EBF2 have distinct but overlapping roles in ethylene signaling

机译:拟南芥EIN3结合F盒蛋白EBF1和EBF2在乙烯信号传导中具有独特但重叠的作用

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Ethylene signaling in Arabidopsis thaliana converges on the ETHYLENE-INSENSITIVE3 (EIN3)/EIN3-Like (EIL) transcription factors to induce various responses. EIN3 BINDING F-BOX1 (EBF1) and EBF2 were recently shown to function in ethylene perception by regulating EIN3/EIL turnover. In the absence of ethylene, EIN3 and possibly other EIL proteins are targeted for ubiquitination and subsequent degradation by Cullin 1-based E3 complexes containing EBF1 and 2. Ethylene appears to block this ubiquitination, allowing EIN3/EIL levels to rise and mediate ethylene signaling. Through analysis of mutant combinations affecting accumulation of EBF1, EBF2, EIN3, and EIL1, we show that EIN3 and EIL1 are the main targets of EBF1/2. Kinetic analyses of hypocotyl growth inhibition in response to ethylene and growth recovery after removal of the hormone revealed that EBF1 and 2 have temporally distinct but overlapping roles in modulating ethylene perception. Whereas EBF1 plays the main role in air and during the initial phase of signaling, EBF2 plays a more prominent role during the latter stages of the response and the resumption of growth following ethylene removal. Through their coordinated control of EIN3/ EIL1 levels, EBF1 and EBF2 fine-tune ethylene responses by repressing signaling in the absence of the hormone, dampening signaling at high hormone concentrations, and promoting a more rapid recovery after ethylene levels dissipate.
机译:拟南芥中的乙烯信号在ETHINS-INENSITIVE3(EIN3)/ EIN3-Like(EIL)转录因子上汇聚以诱导各种反应。最近显示,通过调节EIN3 / EIL转换,结合EIN3的F-BOX1(EBF1)和EBF2在乙烯感知中起作用。在没有乙烯的情况下,EIN3和其他可能的EIL蛋白将被泛素化并随后被包含EBF1和2的基于Cullin 1的E3复合物降解。乙烯似乎阻止了这种泛素化,从而允许EIN3 / EIL水平升高并介导乙烯信号传导。通过分析影响EBF1,EBF2,EIN3和EIL1积累的突变体组合,我们表明EIN3和EIL1是EBF1 / 2的主要目标。响应乙烯的下胚轴生长抑制的动力学分析和激素去除后的生长恢复显示,EBF1和2在调节乙烯感知方面具有暂时不同但重叠的作用。 EBF1在空气中和信号传递的初始阶段起主要作用,而EBF2在响应的后期和乙烯去除后的生长恢复中起着更为重要的作用。通过对EIN3 / EIL1水平的协调控制,EBF1和EBF2通过抑制不存在激素的信号传导,减弱高激素浓度下的信号传导并促进乙烯水平消散后更快恢复来微调乙烯反应。

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