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生长素诱导的、SCF(TIR1)介导的多聚泛素化标记AUX/IAA蛋白以便降解。

Auxin-induced, SCF(TIR1)-mediated poly-ubiquitination marks AUX/IAA proteins for degradation.

作者信息

Maraschin Felipe dos Santos, Memelink Johan, Offringa Remko

机构信息

Institute of Biology, Leiden University, Clusius Laboratorium, Wassenaarseweg 64, 2333 AL Leiden, The Netherlands.

出版信息

Plant J. 2009 Jul;59(1):100-9. doi: 10.1111/j.1365-313X.2009.03854.x. Epub 2009 Feb 26.

Abstract

The plant hormone auxin (indole-3-acetic acid or IAA) regulates plant development by inducing rapid cellular responses and changes in gene expression. Auxin promotes the degradation of Aux/IAA transcriptional repressors, thereby allowing auxin response factors (ARFs) to activate the transcription of auxin-responsive genes. Auxin enhances the binding of Aux/IAA proteins to the receptor TIR1, which is an F-box protein that is part of the E3 ubiquitin ligase complex SCF(TIR1). Binding of Aux/IAA proteins leads to degradation via the 26S proteasome, but evidence for SCF(TIR1)-mediated poly-ubiquitination of Aux/IAA proteins is lacking. Here we used an Arabidopsis cell suspension-based protoplast system to find evidence for SCF(TIR1)-mediated ubiquitination of the Aux/IAA proteins SHY2/IAA3 and BDL/IAA12. Each of these proteins showed a distinct abundance and repressor activity when expressed in this cell system. Moreover, the amount of endogenous TIR1 protein appeared to be rate-limiting for a proper auxin response measured by the co-transfected DR5::GUS reporter construct. Co-transfection with 35S::TIR1 led to auxin-dependent degradation, and excess of 35S::TIR1 even led to degradation of Aux/IAAs in the absence of auxin treatment. Expression of the mutant tir1-1 protein or the related F-box protein COI1, which is involved in jasmonate signaling, had no effect on Aux/IAA degradation. Our results show that SHY2/IAA3 and BDL/IAA12 are poly-ubiquitinated and degraded in response to increased auxin or TIR1 levels. In conclusion, our data provide experimental support for the model that SCF(TIR1)-dependent poly-ubiquitination of Aux/IAA proteins marks these proteins for degradation by the 26S proteasome, leading to activation of auxin-responsive gene expression.

摘要

植物激素生长素(吲哚 - 3 - 乙酸或IAA)通过诱导快速的细胞反应和基因表达变化来调节植物发育。生长素促进Aux/IAA转录抑制因子的降解,从而使生长素反应因子(ARF)能够激活生长素反应基因的转录。生长素增强Aux/IAA蛋白与受体TIR1的结合,TIR1是一种F - 盒蛋白,是E3泛素连接酶复合物SCF(TIR1)的一部分。Aux/IAA蛋白的结合导致其通过26S蛋白酶体降解,但缺乏SCF(TIR1)介导的Aux/IAA蛋白多聚泛素化的证据。在这里,我们使用基于拟南芥细胞悬浮液的原生质体系统来寻找SCF(TIR1)介导的Aux/IAA蛋白SHY2/IAA3和BDL/IAA12泛素化的证据。当在该细胞系统中表达时,这些蛋白中的每一种都表现出不同的丰度和抑制活性。此外,通过共转染的DR5::GUS报告构建体测量,内源性TIR1蛋白的量似乎是适当生长素反应的限速因素。与35S::TIR1共转染导致生长素依赖性降解,过量的35S::TIR1甚至在没有生长素处理的情况下也导致Aux/IAAs的降解。突变的tir1 - 1蛋白或参与茉莉酸信号传导的相关F - 盒蛋白COI1的表达对Aux/IAA降解没有影响。我们的结果表明,SHY2/IAA3和BDL/IAA12会响应生长素或TIR1水平的升高而发生多聚泛素化并降解。总之,我们的数据为以下模型提供了实验支持:SCF(TIR1)依赖性的Aux/IAA蛋白多聚泛素化标记这些蛋白以便被26S蛋白酶体降解,从而导致生长素反应基因表达的激活。

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