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Identical Amino Acid Substitutions in the Repression Domain of Auxin/Indole-3-Acetic Acid Proteins Have Contrasting Effects on Auxin Signaling

机译:生长素/吲哚-3-乙酸蛋白阻遏域中相同的氨基酸取代对生长素信号传导具有相反的影响

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摘要

Auxin/indole-3-acetic acid (Aux/IAA) proteins function as repressors of auxin response gene expression when auxin concentrations in a cell are low. At elevated auxin concentrations, these repressors are destroyed via the ubiquitin-proteasome pathway, resulting in derepression/activation of auxin response genes. Most Aux/IAA repressors contain four conserved domains, with one of these being an active, portable repression domain (domain I) and a second being an auxin-dependent instability domain (domain II). Here, we have analyzed the effects of amino acid substitutions in the repression domain of selected Aux/IAA proteins. We show that stabilized versions of Aux/IAA proteins with amino acid substitutions in domain I display contrasting phenotypes when expressed in transformed Arabidopsis (Arabidopsis thaliana) plants. An alanine-for-leucine substitution in the LxLxL (where L is leucine and x is another amino acid) repression domain of IAA3, IAA6, or IAA19 confers enhanced auxin response gene expression and “high-auxin” phenotypes when expressed from the 35S or IAA19 promoter (as tested with IAA19) in transformed Arabidopsis plants. In marked contrast, a single alanine-for-leucine substitution in domain I of IAA12 or IAA17 confers repression of auxin response genes and “low-auxin” phenotypes. These results point to intrinsic differences in the repression domain(s) of IAA proteins and suggest that some IAA proteins have stronger or more complex repression domains than others.
机译:当细胞中的生长素浓度较低时,生长素/吲哚-3-乙酸(Aux / IAA)蛋白可作为生长素应答基因表达的阻遏物。在升高的植物生长素浓度下,这些阻遏物通过泛素-蛋白酶体途径被破坏,导致植物生长素应答基因的抑制/激活。大多数Aux / IAA阻遏物包含四个保守域,其中一个是活跃的便携式抑制域(域I),另一个是生长素依赖性不稳定域(域II)。在这里,我们分析了所选Aux / IAA蛋白阻抑域中氨基酸取代的影响。我们显示,在转化的拟南芥(Arabidopsis thaliana)植物中表达时,在结构域I中具有氨基酸取代的Aux / IAA蛋白的稳定版本显示出不同的表型。 IAA3,IAA6或IAA19的LxLxL(其中L是亮氨酸,x是另一个氨基酸)阻遏域中的丙氨酸-亮氨酸替代赋予了生长素应答基因表达增强和“高生长素”表型(从35S或转化的拟南芥植物中的IAA19启动子(用IAA19测试)。与之形成鲜明对比的是,IAA12或IAA17的结构域I中的单个丙氨酸-亮氨酸取代赋予植物生长素应答基因和“低植物生长素”表型抑制。这些结果指出了IAA蛋白阻抑结构域的内在差异,并表明某些IAA蛋白比其他IAA蛋白具有更强或更复杂的阻抑结构域。

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