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Mutations in the TIR1 Auxin Receptor That Increase Affinity for Auxin/Indole-3-Acetic Acid Proteins Result in Auxin Hypersensitivity

机译:TIR1生长素受体的突变增加对生长素/吲哚-3-乙酸蛋白的亲和力导致生长素超敏反应

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摘要

The phytohormone auxin regulates virtually every aspect of plant development. The hormone directly mediates the interaction between the two members of the auxin coreceptor complex, a TRANSPORT INHIBITOR RESPONSE (TIR1)/AUXIN SIGNALING F-BOX protein and an AUXIN/INDOLE-3-ACETIC ACID () transcriptional repressor. To learn more about the interaction between these proteins, a mutant screen was performed using the yeast (Saccharomyces cerevisiae) two-hybrid system in Arabidopsis (Arabidopsis thaliana). Two tir1 mutations were identified that increased interaction with . The D170E and M473L mutations increase affinity between TIR1 and the degron motif of and enhance the activity of the SCFTIR1 complex. This resulted in faster degradation of and increased transcription of auxin-responsive genes in the plant. Plants carrying the pTIR1:tir1 D170E/M473L-Myc transgene exhibit diverse developmental defects during plant growth and display an auxin-hypersensitive phenotype. This work demonstrates that changes in the leucine-rich repeat domain of the TIR1 auxin coreceptor can alter the properties of SCFTIR1.
机译:植物激素生长素实际上调节植物发育的各个方面。该激素直接介导生长素共受体复合物的两个成员之间的相互作用,即运输抑制剂反应(TIR1)/ AUXIN信号F-BOX蛋白和AUXIN / INDOLE-3-ACETIC转录阻遏物。为了了解有关这些蛋白质之间相互作用的更多信息,使用拟南芥(Arabidopsis thaliana)中的酵母(Saccharomyces cerevisiae)二级杂交系统进行了突变筛选。两个tir1突变被确定,增加了与的相互作用。 D170E和M473L突变增加了TIR1和degron基序之间的亲和力,并增强了SCF TIR1 复合物的活性。这导致植物中生长素应答基因的更快降解和增加转录。携带pTIR1:tir1 D170E / M473L-Myc转基因的植物在植物生长过程中表现出多种发育缺陷,并表现出生长素超敏表型。这项工作表明,TIR1生长素共受体的富亮氨酸重复结构域的变化可以改变SCF TIR1 的性质。

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