Durian Guido, Sedaghatmehr Mastoureh, Matallana-Ramirez Lilian P, Schilling Silke M, Schaepe Sieke, Guerra Tiziana, Herde Marco, Witte Claus-Peter, Mueller-Roeber Bernd, Schulze Waltraud X, Balazadeh Salma, Romeis Tina
Department of Plant Biochemistry, Dahlem Centre of Plant Sciences, Institute for Biology, Freie Universität Berlin, 14195 Berlin, Germany.
University of Turku, Molecular Plant Biology, Department of Biochemistry, FI-20014 Turku, Finland.
Plant Cell. 2020 May;32(5):1610-1625. doi: 10.1105/tpc.19.00810. Epub 2020 Feb 28.
Calcium-regulated protein kinases are key components of intracellular signaling in plants that mediate rapid stress-induced responses to changes in the environment. To identify in vivo phosphorylation substrates of CALCIUM-DEPENDENT PROTEIN KINASE1 (CPK1), we analyzed the conditional expression of constitutively active CPK1 in conjunction with in vivo phosphoproteomics. We identified Arabidopsis () ORESARA1 (ORE1), the developmental master regulator of senescence, as a direct CPK1 phosphorylation substrate. CPK1 phosphorylates ORE1 at a hotspot within an intrinsically disordered region. This augments transcriptional activation by ORE1 of its downstream target gene (). Plants that overexpress ORE1, but not an ORE1 variant lacking the CPK1 phosphorylation hotspot, promote early senescence. Furthermore, ORE1 is required for enhanced cell death induced by CPK1 signaling. Our data validate the use of conditional expression of an active enzyme combined with phosphoproteomics to decipher specific kinase target proteins of low abundance, of transient phosphorylation, or in yet-undescribed biological contexts. Here, we have identified that senescence is not just under molecular surveillance manifested by stringent gene regulatory control over In addition, the decision to die is superimposed by an additional layer of control toward ORE1 via its posttranslational modification linked to the calcium-regulatory network through CPK1.
钙调节蛋白激酶是植物细胞内信号传导的关键组成部分,介导对环境变化的快速应激诱导反应。为了鉴定钙依赖性蛋白激酶1(CPK1)的体内磷酸化底物,我们结合体内磷酸化蛋白质组学分析了组成型活性CPK1的条件性表达。我们鉴定出衰老的发育主调节因子拟南芥ORE1(ORE1)是CPK1的直接磷酸化底物。CPK1在一个内在无序区域内的热点处使ORE1磷酸化。这增强了ORE1对其下游靶基因的转录激活。过表达ORE1但不表达缺乏CPK1磷酸化热点的ORE1变体的植物会促进早期衰老。此外,ORE1是CPK1信号传导诱导的增强细胞死亡所必需的。我们的数据验证了使用活性酶的条件性表达结合磷酸化蛋白质组学来破译低丰度、瞬时磷酸化或尚未描述的生物学背景下的特定激酶靶蛋白。在这里,我们已经确定衰老不仅受到对……的严格基因调控所表现出的分子监测。此外,通过与CPK1的钙调节网络相关的翻译后修饰,对ORE1的另一层控制叠加在细胞死亡的决定上。