Gimenez-Ibanez Selena, Boter Marta, Solano Roberto
Plant Molecular Genetics Department, Centro Nacional de Biotecnología-CSIC (CNB-CSIC), 28049, Madrid, Spain.
Plant Molecular Genetics Department, Centro Nacional de Biotecnología-CSIC (CNB-CSIC), 28049, Madrid, Spain
Essays Biochem. 2015;58:83-100. doi: 10.1042/bse0580083.
Jasmonates (JAs) are essential signalling molecules that co-ordinate the plant response to biotic and abiotic challenges, as well as co-ordinating several developmental processes. Huge progress has been made over the last decade in understanding the components and mechanisms that govern JA perception and signalling. The bioactive form of the hormone, (+)-7-iso-jasmonyl-L-isoleucine (JA-Ile), is perceived by the COI1-JAZ co-receptor complex. JASMONATE ZIM DOMAIN (JAZ) proteins also act as direct repressors of transcriptional activators such as MYC2. In the emerging picture of JA-Ile perception and signalling, COI1 operates as an E3 ubiquitin ligase that upon binding of JA-Ile targets JAZ repressors for degradation by the 26S proteasome, thereby derepressing transcription factors such as MYC2, which in turn activate JA-Ile-dependent transcriptional reprogramming. It is noteworthy that MYCs and different spliced variants of the JAZ proteins are involved in a negative regulatory feedback loop, which suggests a model that rapidly turns the transcriptional JA-Ile responses on and off and thereby avoids a detrimental overactivation of the pathway. This chapter highlights the most recent advances in our understanding of JA-Ile signalling, focusing on the latest repertoire of new targets of JAZ proteins to control different sets of JA-Ile-mediated responses, novel mechanisms of negative regulation of JA-Ile signalling, and hormonal cross-talk at the molecular level that ultimately determines plant adaptability and survival.
茉莉酸类物质(JAs)是重要的信号分子,可协调植物对生物和非生物胁迫的响应,以及协调多个发育过程。在过去十年中,我们对茉莉酸感知和信号传导的组成成分及机制的理解取得了巨大进展。激素的生物活性形式,(+)-7-异茉莉酰-L-异亮氨酸(JA-Ile),由COI1-JAZ共受体复合物感知。茉莉酸锌指结构域(JAZ)蛋白也作为转录激活因子如MYC2的直接阻遏物。在JA-Ile感知和信号传导的新图景中,COI1作为一种E3泛素连接酶,在结合JA-Ile后,将JAZ阻遏物靶向26S蛋白酶体进行降解,从而解除对转录因子如MYC2的抑制,进而激活JA-Ile依赖的转录重编程。值得注意的是,MYC蛋白和JAZ蛋白的不同剪接变体参与了一个负调控反馈环,这提示了一种模型,该模型可快速开启和关闭转录JA-Ile反应,从而避免该途径的有害过度激活。本章重点介绍了我们对JA-Ile信号传导理解的最新进展,聚焦于JAZ蛋白新靶点的最新情况,以控制不同组别的JA-Ile介导的反应、JA-Ile信号传导的新型负调控机制以及最终决定植物适应性和生存能力的分子水平上的激素相互作用。