首页> 美国卫生研究院文献>The Plant Cell >Ethylene-Induced Stabilization of ETHYLENE INSENSITIVE3 and EIN3-LIKE1 Is Mediated by Proteasomal Degradation of EIN3 Binding F-Box 1 and 2 That Requires EIN2 in Arabidopsis
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Ethylene-Induced Stabilization of ETHYLENE INSENSITIVE3 and EIN3-LIKE1 Is Mediated by Proteasomal Degradation of EIN3 Binding F-Box 1 and 2 That Requires EIN2 in Arabidopsis

机译:拟南芥中需要EIN2的EIN3结合F盒1和2的蛋白酶体降解介导了乙烯诱导的乙烯INSENSITIVE3和EIN3-LIKE1的稳定化。

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摘要

Plant responses to ethylene are mediated by regulation of EBF1/2-dependent degradation of the ETHYLENE INSENSITIVE3 (EIN3) transcription factor. Here, we report that the level of EIL1 protein is upregulated by ethylene through an EBF1/2-dependent pathway. Genetic analysis revealed that EIL1 and EIN3 cooperatively but differentially regulate a wide array of ethylene responses, with EIL1 mainly inhibiting leaf expansion and stem elongation in adult plants and EIN3 largely regulating a multitude of ethylene responses in seedlings. When EBF1 and EBF2 are disrupted, EIL1 and EIN3 constitutively accumulate in the nucleus and remain unresponsive to exogenous ethylene application. Further study revealed that the levels of EBF1 and EBF2 proteins are downregulated by ethylene and upregulated by silver ion and MG132, suggesting that ethylene stabilizes EIN3/EIL1 by promoting EBF1 and EBF2 proteasomal degradation. Also, we found that EIN2 is indispensable for mediating ethylene-induced EIN3/EIL1 accumulation and EBF1/2 degradation, whereas MKK9 is not required for ethylene signal transduction, contrary to a previous report. Together, our studies demonstrate that ethylene similarly regulates EIN3 and EIL1, the two master transcription factors coordinating myriad ethylene responses, and clarify that EIN2 but not MKK9 is required for ethylene-induced EIN3/EIL1 stabilization. Our results also reveal that EBF1 and EBF2 act as essential ethylene signal transducers that by themselves are subject to proteasomal degradation.
机译:植物对乙烯的反应是通过调节EBF1 / 2依赖的乙烯不敏感3(EIN3)转录因子降解来介导的。在这里,我们报道乙烯通过EBF1 / 2依赖途径上调EIL1蛋白的水平。遗传分析表明,EIL1和EIN3协同但有差异地调节多种乙烯反应,其中EIL1主要抑制成年植物的叶片膨胀和茎伸长,而EIN3则主要调节幼苗中的多种乙烯反应。当EBF1和EBF2受到破坏时,EIL1和EIN3组成性地积聚在细胞核中,并且对外源乙烯的施加保持不响应。进一步的研究表明,乙烯会下调EBF1和EBF2蛋白的水平,银离子和MG132会上调EBF1和EBF2的蛋白水平,这表明乙烯通过促进EBF1和EBF2蛋白酶体降解来稳定EIN3 / EIL1。同样,我们发现,EIN2对于介导乙烯诱导的EIN3 / EIL1积累和EBF1 / 2降解是必不可少的,而MKK9不需要乙烯信号传导,这与先前的报道相反。在一起,我们的研究表明乙烯类似地调节EIN3和EIL1,这两个主转录因子协调无数的乙烯反应,并阐明乙烯诱导的EIN3 / EIL1稳定需要EIN2而不是MKK9。我们的结果还表明,EBF1和EBF2充当必需的乙烯信号转导子,它们本身会受到蛋白酶体降解。

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