Hayashi Ken-Ichiro, Tan Xu, Zheng Ning, Hatate Tatsuya, Kimura Yoshio, Kepinski Stefan, Nozaki Hiroshi
Department of Biochemistry, Okayama University of Science, Okayama 700-0005, Japan.
Proc Natl Acad Sci U S A. 2008 Apr 8;105(14):5632-7. doi: 10.1073/pnas.0711146105. Epub 2008 Apr 7.
The regulation of gene expression by the hormone auxin is a crucial mechanism in plant development. We have shown that the Arabidopsis F-box protein TIR1 is a receptor for auxin, and our recent structural work has revealed the molecular mechanism of auxin perception. TIR1 is the substrate receptor of the ubiquitin-ligase complex SCF(TIR1). Auxin binding enhances the interaction between TIR1 and its substrates, the Aux/IAA repressors, thereby promoting the ubiquitination and degradation of Aux/IAAs, altering the expression of hundreds of genes. TIR1 is the prototype of a new class of hormone receptor and the first example of an SCF ubiquitin-ligase modulated by a small molecule. Here, we describe the design, synthesis, and characterization of a series of auxin agonists and antagonists. We show these molecules are specific to TIR1-mediated events in Arabidopsis, and their mode of action in binding to TIR1 is confirmed by x-ray crystallographic analysis. Further, we demonstrate the utility of these probes for the analysis of TIR1-mediated auxin signaling in the moss Physcomitrella patens. Our work not only provides a useful tool for plant chemical biology but also demonstrates an example of a specific small-molecule inhibitor of F-box protein-substrate recruitment. Substrate recognition and subsequent ubiquitination by SCF-type ubiquitin ligases are central to many cellular processes in eukaryotes, and ubiquitin-ligase function is affected in several human diseases. Our work supports the idea that it may be possible to design small-molecule agents to modulate ubiquitin-ligase function therapeutically.
生长素对基因表达的调控是植物发育中的关键机制。我们已表明拟南芥F-box蛋白TIR1是生长素的受体,并且我们最近的结构研究揭示了生长素感知的分子机制。TIR1是泛素连接酶复合物SCF(TIR1)的底物受体。生长素结合增强了TIR1与其底物Aux/IAA阻遏蛋白之间的相互作用,从而促进Aux/IAA的泛素化和降解,改变数百个基因的表达。TIR1是一类新型激素受体的原型,也是受小分子调节的SCF泛素连接酶的首个实例。在此,我们描述了一系列生长素激动剂和拮抗剂的设计、合成及特性。我们表明这些分子对拟南芥中TIR1介导的事件具有特异性,并且通过X射线晶体学分析证实了它们与TIR1结合的作用模式。此外,我们证明了这些探针在分析小立碗藓中TIR1介导的生长素信号传导方面的效用。我们的工作不仅为植物化学生物学提供了有用的工具,还展示了一种F-box蛋白-底物募集特异性小分子抑制剂的实例。SCF型泛素连接酶的底物识别及随后的泛素化是真核生物中许多细胞过程的核心,并且泛素连接酶功能在几种人类疾病中受到影响。我们的工作支持了这样一种观点,即有可能设计小分子药物来治疗性地调节泛素连接酶的功能。