Batistič Oliver, Kudla Jörg
Institut für Biologie und Biotechnologie der Pflanzen, Universität Münster, Münster, Germany.
Biochim Biophys Acta. 2012 Aug;1820(8):1283-93. doi: 10.1016/j.bbagen.2011.10.012. Epub 2011 Oct 26.
Calcium serves as a versatile messenger in many adaptation and developmental processes in plants. Ca2+ signals are represented by stimulus-specific spatially and temporally defined Ca2+ signatures. These Ca2+ signatures are detected, decoded and transmitted to downstream responses by a complex toolkit of Ca2+ binding proteins that function as Ca2+ sensors.
This review will reflect on advancements in monitoring Ca2+ dynamics in plants. Moreover, it will provide insights in the extensive and complex toolkit of plant Ca2+ sensor proteins that relay the information presented in the Ca2+ signatures into phosphorylation events, changes in protein-protein interaction or regulation of gene expression.
Plants' response to signals is encoded by different Ca2+ signatures. The plant decoding Ca2+ toolkit encompasses different families of Ca2+ sensors like Calmodulins (CaM), Calmodulin-like proteins (CMLs), Ca2+-dependent protein kinases (CDPKs), Calcineurin B-like proteins (CBLs) and their interacting kinases (CIPKs). These Ca2+ sensors are encoded by complex gene families and form intricate signaling networks in plants that enable specific, robust and flexible information processing.
This review provides new insights about the biochemical regulation, physiological functions and of newly identified target proteins of the major plant Ca2+ sensor families. This article is part of a Special Issue entitled Biochemical, biophysical and genetic approaches to intracellular calcium signaling.
钙在植物的许多适应和发育过程中作为一种多功能信使发挥作用。Ca2+信号由刺激特异性的时空定义的Ca2+特征表示。这些Ca2+特征通过作为Ca2+传感器起作用的Ca2+结合蛋白的复杂工具包进行检测、解码并传递至下游反应。
本综述将思考植物中Ca2+动态监测方面的进展。此外,它将深入探讨植物Ca2+传感器蛋白的广泛而复杂的工具包,这些蛋白将Ca2+特征中呈现的信息转化为磷酸化事件、蛋白质-蛋白质相互作用的变化或基因表达的调控。
植物对信号的反应由不同的Ca2+特征编码。植物解码Ca2+的工具包包括不同家族的Ca2+传感器,如钙调蛋白(CaM)、类钙调蛋白(CML)、Ca2+依赖性蛋白激酶(CDPK)、类钙调神经磷酸酶B蛋白(CBL)及其相互作用激酶(CIPK)。这些Ca2+传感器由复杂的基因家族编码,并在植物中形成复杂的信号网络,实现特定、稳健和灵活的信息处理。
本综述提供了关于主要植物Ca2+传感器家族的生化调控、生理功能以及新鉴定的靶蛋白的新见解。本文是名为“细胞内钙信号传导的生化、生物物理和遗传方法”的特刊的一部分。