Straub Tatsiana, Ludewig Uwe, Neuhäuser Benjamin
Institute of Crop Science, Nutritional Crop Physiology, University of Hohenheim, D-70593 Stuttgart, Germany.
Institute of Crop Science, Nutritional Crop Physiology, University of Hohenheim, D-70593 Stuttgart, Germany
Plant Cell. 2017 Feb;29(2):409-422. doi: 10.1105/tpc.16.00806. Epub 2017 Feb 10.
Ion transport in plants is not only strictly regulated on a transcriptional level, but it is also regulated posttranslationally. Enzyme modifications such as phosphorylation provide rapid regulation of many plant ion transporters and channels. Upon exposure to high ammonium concentrations in the rhizosphere, the high-affinity ammonium transporters (AMTs) in are efficiently inactivated by phosphorylation to avoid toxic accumulation of cytoplasmic ammonium. External ammonium stimulates the phosphorylation of a conserved threonine in the cytosolic AMT1 C terminus, which allosterically inactivates AMT1 trimers. Using a genetic screen, we found that CALCINEURIN B-LIKE INTERACTING PROTEIN KINASE23 (CIPK23), a kinase that also regulates the most abundant NO transporter, NPF6;3, and activates the K channel AKT1, inhibits ammonium transport and modulates growth sensitivity to ammonium. Loss of increased root NH uptake after ammonium shock and conferred hypersensitivity to ammonium and to the transport analog methylammonium. CIPK23 interacts with AMT1;1 and AMT1;2 in yeast, oocytes, and in planta. Inactivation of AMT1;2 by direct interaction with CIPK23 requires kinase activity and the calcineurin B-like binding protein CBL1. Since K, NO, and NH are major ions taken up by plants, CIPK23 appears to occupy a key position in controlling ion balance and ion homeostasis in the plant cell.
植物中的离子转运不仅在转录水平上受到严格调控,在翻译后水平也受到调控。诸如磷酸化等酶修饰对许多植物离子转运蛋白和通道提供快速调控。在根际暴露于高铵浓度时,中的高亲和力铵转运蛋白(AMTs)通过磷酸化被有效失活,以避免细胞质铵的毒性积累。外部铵刺激胞质AMT1 C末端保守苏氨酸的磷酸化,从而变构失活AMT1三聚体。通过遗传筛选,我们发现钙调神经磷酸酶B样相互作用蛋白激酶23(CIPK23),一种还调控最丰富的NO转运蛋白NPF6;3并激活K通道AKT1的激酶,抑制铵转运并调节对铵的生长敏感性。的缺失在铵冲击后增加了根系对NH的吸收,并赋予对铵和转运类似物甲铵的超敏感性。CIPK23在酵母、卵母细胞和植物中与AMT1;1和AMT1;2相互作用。通过与CIPK23直接相互作用使AMT1;2失活需要激酶活性和钙调神经磷酸酶B样结合蛋白CBL1。由于K、NO和NH是植物吸收的主要离子,CIPK23似乎在控制植物细胞中的离子平衡和离子稳态方面占据关键位置。