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The Arabidopsis F-box protein TIR1 is an auxin receptor

机译:拟南芥F-box蛋白TIR1是一种生长素受体

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Despite 100 years of evidence showing a pivotal role for indole-3-acetic acid (IAA or auxin) in plant development, the mechanism of auxin perception has remained elusive. Central to auxin response are changes in gene expression, brought about by auxin-induced interaction between the Aux/IAA transcriptional repressor proteins and the ubiquitin - ligase complex SCFTIR1, thus targeting for them proteolysis. Regulated SCF-mediated protein degradation is a widely occurring signal transduction mechanism. Target specificity is conferred by the F-box protein subunit of the SCF (TIR1 in the case of Aux/IAAs) and there are multiple F-box protein genes in all eukaryotic genomes examined so far. Although SCF - target interaction is usually regulated by signal-induced modification of the target, we have previously shown that auxin signalling involves the modification of SCFTIR1. Here we show that this modification involves the direct binding of auxin to TIR1 and thus that TIR1 is an auxin receptor mediating transcriptional responses to auxin.
机译:尽管有100年的证据表明吲哚-3-乙酸(IAA或生长素)在植物发育中起着关键作用,但生长素感知的机制仍然难以捉摸。植物生长素应答的中心是基因表达的变化,这种变化是由生长素诱导的Aux / IAA转录阻遏蛋白与泛素-连接酶复合物SCFTIR1之间的相互作用引起的,从而使其成为蛋白水解的靶标。调节的SCF介导的蛋白质降解是广泛发生的信号转导机制。 SCF的F-box蛋白亚基(在Aux / IAA中为TIR1)赋予了靶标特异性,到目前为止,在所有真核基因组中都有多个F-box蛋白基因。尽管SCF-靶标相互作用通常受靶标的信号诱导修饰调控,但我们先前已证明生长素信号转导涉及SCFTIR1的修饰。在这里,我们表明这种修饰涉及生长素与TIR1的直接结合,因此TIR1是一种生长素受体,介导对生长素的转录反应。

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