Dreher Kate, Callis Judy
Section of Molecular and Cellular Biology, Plant Biology Graduate Group Program, University of California, Davis, One Shields Avenue, Davis, CA 95616, USA.
Ann Bot. 2007 May;99(5):787-822. doi: 10.1093/aob/mcl255. Epub 2007 Jan 12.
The covalent attachment of ubiquitin to a substrate protein changes its fate. Notably, proteins typically tagged with a lysine48-linked polyubiquitin chain become substrates for degradation by the 26S proteasome. In recent years many experiments have been performed to characterize the proteins involved in the ubiquitylation process and to identify their substrates, in order to understand better the mechanisms that link specific protein degradation events to regulation of plant growth and development.
This review focuses on the role that ubiquitin plays in hormone synthesis, hormonal signalling cascades and plant defence mechanisms. Several examples are given of how targeted degradation of proteins affects downstream transcriptional regulation of hormone-responsive genes in the auxin, gibberellin, abscisic acid, ethylene and jasmonate signalling pathways. Additional experiments suggest that ubiquitin-mediated proteolysis may also act upstream of the hormonal signalling cascades by regulating hormone biosynthesis, transport and perception. Moreover, several experiments demonstrate that hormonal cross-talk can occur at the level of proteolysis. The more recently established role of the ubiquitin/proteasome system (UPS) in defence against biotic threats is also reviewed.
The UPS has been implicated in the regulation of almost every developmental process in plants, from embryogenesis to floral organ production probably through its central role in many hormone pathways. More recent evidence provides molecular mechanisms for hormonal cross-talk and links the UPS system to biotic defence responses.
泛素与底物蛋白的共价连接会改变其命运。值得注意的是,通常被赖氨酸48连接的多聚泛素链标记的蛋白质会成为26S蛋白酶体降解的底物。近年来,人们进行了许多实验来表征参与泛素化过程的蛋白质并鉴定其底物,以便更好地理解将特定蛋白质降解事件与植物生长发育调控联系起来的机制。
本综述重点关注泛素在激素合成、激素信号级联反应和植物防御机制中所起的作用。文中给出了几个例子,说明蛋白质的靶向降解如何影响生长素、赤霉素、脱落酸、乙烯和茉莉酸信号通路中激素响应基因的下游转录调控。其他实验表明,泛素介导的蛋白水解也可能通过调节激素生物合成、运输和感知在激素信号级联反应的上游起作用。此外,一些实验证明激素间的相互作用可以发生在蛋白水解水平。本文还综述了泛素/蛋白酶体系统(UPS)在抵御生物威胁方面最近确立的作用。
UPS可能通过其在许多激素途径中的核心作用,参与了植物从胚胎发生到花器官形成的几乎每一个发育过程的调控。最新证据提供了激素相互作用的分子机制,并将UPS系统与生物防御反应联系起来。