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Reconstitution of the Jasmonate Signaling Pathway in Plant Protoplasts

机译:植物原生质体中茉莉酮酸酯信号通路的重构

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摘要

The phytohormone jasmonic acid (JA) plays an important role in various plant developmental processes and environmental adaptations. The JA signaling pathway has been well-elucidated in the reference plant . It starts with the perception of the active JA derivative, jasmonoyl-isoleucine (JA-Ile), by the F-box protein COI1 which is part of the E3-ligase SCF . Binding of JA-Ile enables the interaction between COI1 and JAZ repressor proteins. Subsequent degradation of JAZ proteins leads to the activation of transcription factors like e.g., MYC2. Here we demonstrate that the pathway can be reconstituted in transiently transformed protoplasts. Analysis of the stability of a JAZ1-fLuc fusion protein as a function of COI1 transiently expressed in protoplasts allows structure function analysis of both JAZs and COI1. Using this system, we found that conserved cysteines in COI1 influence steady state COI1 protein levels. Using a luciferase reporter gene under the control of the promoter enable to address those features of JAZ1 that are required for MYC2 repression. Interestingly, the conserved TIFY-motif previously described to interact with NINJA to recruit the corepressor TOPLESS is not necessary for repression. This result is in favor of the alternative repression mode that proposes a direct competition between repressive JAZs and promotive MEDIATOR25 at MYC2. Finally, using protoplasts from the double mutant, which is deficient in JA synthesis and perception, we provide a system that has the potential to study the activity of different COI1 variants in the presence of different ligands.
机译:植物激素茉莉酸(JA)在各种植物发育过程和环境适应中起着重要作用。在参考植物中已经充分阐明了JA信号传导途径。它是通过E-连接酶SCF的一部分F-box蛋白COI1来感知活性JA衍生物茉莉酰基-异亮氨酸(JA-Ile)的开始的。 JA-Ile的结合使得COI1和JAZ阻遏蛋白之间相互作用。 JAZ蛋白的随后降解导致转录因子如MYC2的活化。在这里,我们证明了该途径可以在瞬时转化的原生质体中重建。 JAZ1-fLuc融合蛋白的稳定性与原生质体中瞬时表达的COI1的关系的分析允许进行JAZ和COI1的结构功能分析。使用此系统,我们发现COI1中的保守半胱氨酸影响稳态COI1蛋白水平。在启动子的控制下使用荧光素酶报道基因可以解决MYC2抑制所需的JAZ1特征。有趣的是,先前描述的与NINJA相互作用以募集抗心因子TOPLESS的保守TIFY-基序对于抑制是不必要的。该结果支持替代性抑制模式,该模式建议在MYC2上,抑制性JAZ与激励性MEDIATOR25之间直接竞争。最后,使用来自 缺乏JA合成和感知能力的双突变体,我们提供了一种在存在不同配体的情况下研究不同COI1变体活性的潜力的系统。

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