Institute of Life Sciences, Catholic University of Louvain, Louvain-la-Neuve, Belgium.
Plant Signal Behav. 2011 Sep;6(9):1383-5. doi: 10.4161/psb.6.9.16477.
What goes up should come down and vice versa. Cellular homeostasis requires that every signaling process involving up- or down-regulation of a given pathway should only be transient, and returning to steady state after a signaling process is as vital to living cells as being able to perceive and transduce changes of their environment. One of the best studied responses of plant cells subjected to water-related stress is the transient increase of the phytohormone abscisic acid (ABA). The increase in active ABA regulates the expression of ABA-responsive genes, some of which are strictly ABA-dependent in that their expression is almost undetectable in absence of elevated levels of cellular ABA. Since the function of these proteins may only be required transiently, a regulatory mechanism for transcriptionally and/or post-translationally regulate their expression should exist. In general during stress, molecular mechanisms aimed at shutting down the ABA-dependent signaling, as required at some point for the homeostasis of the plant cell, are poorly understood. The arabidopsis TSPO (translocator protein)-related protein is transiently induced by abiotic stresses and ABA treatment. Our recent work aiming at understanding the function and regulation of At-TSPO yielded exciting insights into the interplay among a stress-regulated protein, ABA responses, tetrapyrrole biosynthesis/scavenging, and autophagy. We discuss these findings in relation to tetrapyrroles metabolism/trafficking and the regulation of ABA-dependent signaling by the plant cell.
物极必反。细胞内环境稳态要求,涉及给定途径的上调或下调的每一个信号转导过程都应该是短暂的,并且在信号转导过程之后恢复到稳态对于活细胞来说和能够感知和转导其环境变化一样重要。植物细胞对与水相关的胁迫的反应中研究得最好的之一是植物激素脱落酸 (ABA) 的短暂增加。活性 ABA 的增加调节 ABA 响应基因的表达,其中一些基因在细胞内 ABA 水平升高的情况下几乎检测不到,严格依赖于 ABA。由于这些蛋白质的功能可能只需要短暂表达,因此应该存在一种转录和/或翻译后调节其表达的调控机制。一般来说,在胁迫期间,分子机制旨在关闭 ABA 依赖性信号转导,因为在植物细胞的内稳态方面,在某些时候需要关闭该信号转导,但目前对此知之甚少。拟南芥 TSPO(转运蛋白)相关蛋白被非生物胁迫和 ABA 处理短暂诱导。我们最近旨在了解 At-TSPO 的功能和调控的工作,令人兴奋地揭示了应激调节蛋白、ABA 反应、四吡咯生物合成/清除和自噬之间的相互作用。我们将这些发现与四吡咯代谢/运输以及植物细胞中 ABA 依赖性信号转导的调节联系起来进行讨论。