Department of Chemistry, Graduate School of Science, Tohoku University, Sendai, Japan.
Department of Chemistry, Graduate School of Science, Tohoku University, Sendai, Japan.
J Biol Chem. 2022 Jan;298(1):101504. doi: 10.1016/j.jbc.2021.101504. Epub 2021 Dec 18.
A network of protein-protein interactions (PPI) is involved in the activation of (+)-7-iso-jasmonoyl-L-isoleucine (JA-Ile), a plant hormone that regulates plant defense responses as well as plant growth and development. In the absence of JA-Ile, inhibitory protein jasmonate-ZIM-domain (JAZ) represses JA-related transcription factors, including a master regulator, MYC. In contrast, when JA-Ile accumulates in response to environmental stresses, PPI occurs between JAZ and the F-box protein COI1, which triggers JAZ degradation, resulting in derepressed MYC that can interact with the transcriptional mediator MED25 and upregulate JA-Ile-related gene expression. Activated JA signaling is eventually suppressed through the catabolism of JA-Ile and feedback suppression by JAZ splice variants containing a cryptic MYC-interacting domain (CMID). However, the detailed structural basis of some PPIs involved in JA-Ile signaling remains unclear. Herein, we analyzed PPI between MYC3 and MED25, focusing on the key interactions that activate the JA-Ile signaling pathway. Biochemical assays revealed that a short binding domain of MED25 (CMIDM) is responsible for the interaction with MYC, and that a bipartite interaction is critical for the formation of a stable complex. We also show the mode of interaction between MED25 and MYC is closely related to that of CMID and MYC. In addition, quantitative analyses on the binding of MYC3-JAZs and MYC3-MED25 revealed the order of binding affinity as JAZ < MED25 < JAZ, suggesting a mechanism for how the transcriptional machinery causes activation and negative feedback regulation during jasmonate signaling. These results further illuminate the transcriptional machinery responsible for JA-Ile signaling.
蛋白质-蛋白质相互作用(PPI)网络参与了(+)-7-异茉莉酰基-L-异亮氨酸(JA-Ile)的激活,JA-Ile 是一种植物激素,可调节植物防御反应以及植物生长和发育。在没有 JA-Ile 的情况下,抑制蛋白茉莉酸-ZIM 结构域(JAZ)抑制与 JA 相关的转录因子,包括主调控因子 MYC。相反,当 JA-Ile 响应环境胁迫而积累时,JAZ 与 F-box 蛋白 COI1 之间发生 PPI,这触发 JAZ 降解,导致被解除抑制的 MYC 可以与转录中介 MED25 相互作用,并上调 JA-Ile 相关基因的表达。激活的 JA 信号最终通过 JA-Ile 的分解代谢和包含隐密 MYC 相互作用结构域(CMID)的 JAZ 剪接变体的反馈抑制而被抑制。然而,一些涉及 JA-Ile 信号的 PPI 的详细结构基础仍然不清楚。在此,我们分析了 MYC3 和 MED25 之间的 PPI,重点研究了激活 JA-Ile 信号通路的关键相互作用。生化分析表明,MED25 的短结合结构域(CMIDM)负责与 MYC 相互作用,并且二分相互作用对于形成稳定的复合物至关重要。我们还展示了 MED25 和 MYC 之间的相互作用模式与 CMID 和 MYC 之间的相互作用模式密切相关。此外,对 MYC3-JAZs 和 MYC3-MED25 结合的定量分析揭示了结合亲和力的顺序为 JAZ < MED25 < JAZ,这表明了在茉莉酸信号转导过程中,转录机制如何引起激活和负反馈调节的机制。这些结果进一步阐明了负责 JA-Ile 信号的转录机制。