Drug Development/Diagnostics and Biotechnology Division, CSIR - Indian Institute of Chemical Biology, 4, Raja S. C. Mullick Road, Kolkata, 700 032, India.
Structural Biology and Bioinformatics Division, CSIR - Indian Institute of Chemical Biology, 4, Raja S. C. Mullick Road, Kolkata, 700 032, India.
Plant Physiol Biochem. 2016 Nov;108:79-89. doi: 10.1016/j.plaphy.2016.05.033. Epub 2016 May 27.
Jasmonic acid (JA) signaling pathway in plants is activated against various developmental processes as well as biotic and abiotic stresses. The Jasmonate ZIM-domain (JAZ) protein family, the key regulator of plant JA signaling pathway, also participates in phytohormone crosstalk. This is the first study revealing the in vivo interactions of finger millet (Eleusine coracana (L.) Gaertn.) JAZ protein (EcJAZ) under methyl jasmonate (MJ) treatment. The aim of the study was to explore not only the JA signaling pathway but also the phytohormone signaling crosstalk of finger millet, a highly important future crop. From the MJ-treated finger millet seedlings, the EcJAZ interacting proteins were purified by affinity chromatography with the EcJAZ-matrix. Twenty-one proteins of varying functionalities were successfully identified by MALDI-TOF-TOF Mass spectrometry. Apart from the previously identified JAZ binding proteins, most prominently, EcJAZ was found to interact with transcription factors like NAC, GATA and also with Cold responsive protein (COR), etc. that might have extended the range of functionalities of JAZ proteins. Moreover, to evaluate the interactions of EcJAZ in the JA-co-receptor complex, we generated ten in-silico models containing the EcJAZ degron and the COI1-SKP1 of five monocot cereals viz., rice, wheat, maize, Sorghum and Setaria with JA-Ile or coronatine. Our results indicated that the EcJAZ protein of finger millet could act as the signaling hub for the JA and other phytohormone signaling pathways, in response to a diverse set of stressors and developmental cues to provide survival fitness to the plant.
茉莉酸(JA)信号通路在植物中既可以被激活来应对各种发育过程,也可以被激活来应对生物和非生物胁迫。茉莉酸 ZIM 结构域(JAZ)蛋白家族是植物 JA 信号通路的关键调节因子,也参与植物激素的交叉对话。这是第一项揭示手指小米( Eleusine coracana (L.) Gaertn.)JAZ 蛋白( EcJAZ )在茉莉酸甲酯(MJ)处理下体内相互作用的研究。该研究的目的不仅是探索茉莉酸信号通路,还探索手指小米的植物激素信号交叉对话,手指小米是一种非常重要的未来作物。从经 MJ 处理的手指小米幼苗中,通过 EcJAZ-基质的亲和层析纯化了 EcJAZ 相互作用蛋白。通过 MALDI-TOF-TOF 质谱成功鉴定了 21 种具有不同功能的蛋白质。除了先前鉴定的 JAZ 结合蛋白外,最显著的是,EcJAZ 被发现与转录因子如 NAC、GATA 以及冷响应蛋白(COR)等相互作用,这可能扩展了 JAZ 蛋白的功能范围。此外,为了评估 EcJAZ 在 JA 共受体复合物中的相互作用,我们生成了十个包含 EcJAZ 降解结构域和 COI1-SKP1 的从头计算模型,涵盖了水稻、小麦、玉米、高粱和柳枝稷等五种单子叶谷物,并用茉莉酸异亮氨酸或冠菌素处理。我们的结果表明,手指小米的 EcJAZ 蛋白可以作为 JA 和其他植物激素信号通路的信号枢纽,对一系列胁迫和发育线索做出反应,为植物提供生存适应能力。