PMID-sentid Pub_year Sent_text comp_official_name comp_offsetprotein_name organism prot_offset 19704846-0 2008 Two different mechanisms control ethylene sensitivity in Arabidopsis via the regulation of EBF2 expression. ethylene 33-41 EIN3-binding F box protein 2 Arabidopsis thaliana 91-95 18466304-4 2008 Here, we demonstrate feedback regulation of ethylene signaling that results from the direct upregulation of the EBF2 gene by EIN3. ethylene 44-52 EIN3-binding F box protein 2 Arabidopsis thaliana 112-116 18466304-8 2008 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. ethylene 168-176 EIN3-binding F box protein 2 Arabidopsis thaliana 64-68 18466304-9 2008 These results thus indicate that the fine-tuning of ethylene signaling involves the intricate regulation of EBF2 expression in Arabidopsis. ethylene 52-60 EIN3-binding F box protein 2 Arabidopsis thaliana 108-112 20647342-8 2010 Our results also reveal that EBF1 and EBF2 act as essential ethylene signal transducers that by themselves are subject to proteasomal degradation. ethylene 60-68 EIN3-binding F box protein 2 Arabidopsis thaliana 38-42 19704846-2 2008 Our recent study revealed that ethylene signaling is regulated by a negative feedback system involving the direct activation of the EBF2 promoter by EIN3. ethylene 31-39 EIN3-binding F box protein 2 Arabidopsis thaliana 132-136 19704846-4 2008 The sequence downstream of the EBF2 stop codon was also found to play a role in determining the EBF2 expression levels independently of ethylene signaling. ethylene 136-144 EIN3-binding F box protein 2 Arabidopsis thaliana 31-35 19704846-4 2008 The sequence downstream of the EBF2 stop codon was also found to play a role in determining the EBF2 expression levels independently of ethylene signaling. ethylene 136-144 EIN3-binding F box protein 2 Arabidopsis thaliana 96-100 17307926-7 2007 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. ethylene 196-204 EIN3-binding F box protein 2 Arabidopsis thaliana 83-87 17307926-8 2007 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. ethylene 79-87 EIN3-binding F box protein 2 Arabidopsis thaliana 64-68 17307926-8 2007 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. ethylene 247-255 EIN3-binding F box protein 2 Arabidopsis thaliana 64-68 33526703-7 2021 We show that SDIR1 is required for the fine tuning of the ethylene response to ambient temperature changes by mediating temperature-induced EBF1/EBF2 degradation and EIN3 accumulation. ethylene 58-66 EIN3-binding F box protein 2 Arabidopsis thaliana 145-149 15090654-9 2004 Collectively, our results show that the SCF(EBF1/EBF2)-dependent ubiquitination and subsequent removal of EIN3 is critical not only for proper ethylene signaling but also for growth in plants. ethylene 143-151 EIN3-binding F box protein 2 Arabidopsis thaliana 49-53 33526703-3 2021 Notably, EBF1 and EBF2 themselves undergo the 26S proteasome-mediated proteolysis induced by ethylene and other stress signals. ethylene 93-101 EIN3-binding F box protein 2 Arabidopsis thaliana 18-22 29643073-5 2018 The ubiquitin E3 ligase complex containing Skp1, Cullin1, and the F-box protein EBF1 or EBF2 (SCFEBF1/2) target the degradation of EIN3, the master transcription factor in ethylene signaling. ethylene 172-180 EIN3-binding F box protein 2 Arabidopsis thaliana 88-92