Butenko Melinka A, Wildhagen Mari, Albert Markus, Jehle Anna, Kalbacher Hubert, Aalen Reidunn B, Felix Georg
Department of Biosciences, University of Oslo, N-0316 Oslo, Norway
Department of Biosciences, University of Oslo, N-0316 Oslo, Norway.
Plant Cell. 2014 May;26(5):1838-1847. doi: 10.1105/tpc.113.120071. Epub 2014 May 7.
Peptide signals have emerged as an important class of regulators in cell-to-cell communication in plants. Several families of small, secreted proteins with a conserved C-terminal Pro-rich motif have been identified as functional peptide signals in Arabidopsis thaliana. These proteins are presumed to be trimmed proteolytically and undergo posttranslational modifications, such as hydroxylation of Pro residues and glycosylation, to form mature, bioactive signals. Identification and matching of such ligands with their respective receptors remains a major challenge since the genes encoding them often show redundancy and low expression restricted to a few cells or particular developmental stages. To overcome these difficulties, we propose the use of ectopic expression of receptor genes in suitable plant cells like Nicotiana benthamiana for testing ligand candidates in receptor output assays and in binding studies. As an example, we used the IDA peptide HAE/HSL2 receptor signaling system known to regulate floral organ abscission. We demonstrate that the oxidative burst response can be employed as readout for receptor activation by synthetic peptides and that a new, highly sensitive, nonradioactive labeling approach can be used to reveal a direct correlation between peptide activity and receptor affinity. We suggest that these approaches will be of broad value for the field of ligand-receptor studies in plants.
肽信号已成为植物细胞间通讯中一类重要的调节因子。在拟南芥中,几个具有保守C末端富含脯氨酸基序的小分泌蛋白家族已被鉴定为功能性肽信号。这些蛋白质被认为经过蛋白水解加工,并经历翻译后修饰,如脯氨酸残基的羟基化和糖基化,以形成成熟的生物活性信号。由于编码这些配体的基因通常表现出冗余性,且表达水平低,仅限于少数细胞或特定发育阶段,因此鉴定这些配体并将其与各自的受体匹配仍然是一项重大挑战。为了克服这些困难,我们建议在合适的植物细胞如本氏烟草中异位表达受体基因,用于在受体输出分析和结合研究中测试候选配体。例如,我们使用了已知调节花器官脱落的IDA肽HAE/HSL2受体信号系统。我们证明氧化爆发反应可以用作合成肽激活受体的读数,并且一种新的、高度敏感的非放射性标记方法可用于揭示肽活性与受体亲和力之间的直接相关性。我们认为这些方法对植物配体-受体研究领域具有广泛的价值。