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Tomato FK506 Binding Protein 12KD (FKBP12) Mediates the Interaction between Rapamycin and Target of Rapamycin (TOR)

机译:番茄FK506结合蛋白12KD(FKBP12)介导雷帕霉素与雷帕霉素靶标(TOR)之间的相互作用

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摘要

Target of Rapamycin (TOR) signaling is an important regulator in multiple organisms including yeast, plants, and animals. However, the TOR signaling in plants is much less understood as compared to that in yeast and animals. TOR kinase can be efficiently suppressed by rapamycin in the presence of functional FK506 Binding Protein 12 KD (FKBP12) in yeast and animals. In most examined higher plants rapamycin fails to inhibit TOR kinase due to the non-functional FKBP12. Here we find that tomato plants showed obvious growth inhibition when treated with rapamycin and the inhibitory phenotype is similar to suppression of TOR causing by active-site TOR inhibitors (asTORis) such as KU63794, AZD8055, and Torin1. The chemical genetic assays using TOR inhibitors and heterologous expressing SlFKBP12 in Arabidopsis indicated that the TOR signaling is functional in tomato. The protein gel shifting and TOR inhibitors combination assays showed that SlFKBP12 can mediate the interaction between rapamycin and TOR. Furthermore, comparative expression profile analysis between treatments with rapamycin and KU63794 identified highly overlapped Differentially Expressed Genes (DEGs) which are involved in many anabolic and catabolic processes, such as photosynthesis, cell wall restructuring, and senescence in tomato. These observations suggest that SlFFBP12 is functional in tomato. The results provided basic information of TOR signaling in tomato, and also some new insights into how TOR controls plant growth and development through reprogramming the transcription profiles.
机译:雷帕霉素(TOR)信号的靶标是多种生物(包括酵母,植物和动物)中的重要调节剂。但是,与酵母和动物相比,植物中的TOR信号传导要少得多。在酵母和动物中,在功能性FK506结合蛋白12 KD(FKBP12)存在下,雷帕霉素可有效抑制TOR激酶。在大多数检查过的高等植物中,雷帕霉素由于无功能的FKBP12而无法抑制TOR激酶。在这里我们发现,雷帕霉素处理后的番茄植株显示出明显的生长抑制作用,其抑制表型类似于由活性位TOR抑制剂(asTORis)(例如KU63794,AZD8055和Torin1)引起的TOR抑制。在拟南芥中使用TOR抑制剂和异源表达SlFKBP12的化学遗传分析表明,TOR信号在番茄中具有功能。蛋白质凝胶转移和TOR抑制剂组合检测表明SlFKBP12可以介导雷帕霉素和TOR之间的相互作用。此外,雷帕霉素和KU63794处理之间的比较表达谱分析确定了高度重叠的差异表达基因(DEG),这些基因参与了许多合成代谢和分解代谢过程,例如光合作用,细胞壁重组和番茄衰老。这些观察结果表明SlFFBP12在番茄中起作用。该结果提供了番茄中TOR信号转导的基本信息,以及有关TOR如何通过重新编程转录谱来控制植物生长和发育的一些新见解。

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