BIG 可增强 Arg/N-degron 通路介导的蛋白质降解,从而调控拟南芥的缺氧反应和单宁沉积

Hongtao Zhang, Chelsea Rundle, Nikola Winter, Alexandra Miricescu, Brian C Mooney, Andreas Bachmair, Emmanuelle Graciet, Frederica L Theodoulou
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引用次数: 0

摘要

BIG/DARK OVEREXPRESSION OF CAB1/TRANSPORT INHIBITOR RESPONSE3 是一种 0.5-MDa 蛋白,在拟南芥(Arabidopsis thaliana)信号传导和发育过程中具有多种功能。然而,BIG 的生化功能尚不清楚。我们研究了 BIG 在 Arg/N-degron 通路中的作用,其中底物蛋白的命运受 N 端(Nt)残基的影响。我们将一个功能缺失的等位基因与两个N-去甲龙通路E3连接酶突变体(蛋白水解6(prt6)和prt1)杂交,并检测了蛋白质底物的稳定性。在prt6-1 big-2和prt1-1 big-2中,模型底物的稳定性相对于各自的单突变体有所提高;在prt6 big双突变体中,PRT6生理底物HYPOXIA-RESPONSIVE ERF2 (HRE2)和VERNALIZATION2 (VRN2)的丰度同样有所提高。缺氧标记表达在prt6 大双突变体中增强;这种组成型响应需要精氨酰转移酶活性和 RAP 型 ERFVII 转录因子。根的转录组分析不仅表明,与prt6相比,双突变体中多个缺氧响应基因的表达量增加,而且还揭示了PRT6和BIG的其他作用,包括分别通过依赖于ERFVII和独立于ERFVII的机制调节单宁沉积。我们的研究结果表明,BIG与PRT6共同调节拟南芥的缺氧反应和更广泛的过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
BIG enhances Arg/N-degron pathway-mediated protein degradation to regulate Arabidopsis hypoxia responses and suberin deposition
BIG/DARK OVEREXPRESSION OF CAB1/TRANSPORT INHIBITOR RESPONSE3 is a 0.5-MDa protein associated with multiple functions in Arabidopsis (Arabidopsis thaliana) signalling and development. However, the biochemical functions of BIG are unknown. We investigated a role for BIG in the Arg/N-degron pathways, in which substrate protein fate is influenced by the N-terminal (Nt) residue. We crossed a big loss-of-function allele to two N-degron pathway E3 ligase mutants, proteolysis6 (prt6) and prt1, and examined the stability of protein substrates. Stability of model substrates was enhanced in prt6-1 big-2 and prt1-1 big-2 relative to the respective single mutants and the abundance of the PRT6 physiological substrates, HYPOXIA-RESPONSIVE ERF2 (HRE2) and VERNALIZATION2 (VRN2) was similarly increased in prt6 big double mutants. Hypoxia marker expression was enhanced in prt6 big double mutants; this constitutive response required arginyltransferase activity and RAP-type ERFVII transcription factors. Transcriptomic analysis of roots not only demonstrated increased expression of multiple hypoxia-responsive genes in the double mutant relative to prt6, but also revealed other roles for PRT6 and BIG, including regulation of suberin deposition through both ERFVII-dependent and independent mechanisms, respectively. Our results show that BIG acts together with PRT6 to regulate the hypoxia response and broader processes in Arabidopsis.
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