Institute of Synthetic Biology, Heinrich-Heine-Universität Düsseldorf, Düsseldorf, Germany.
Faculty of Biology, University of Freiburg, Freiburg, Germany.
Plant J. 2024 May;118(4):927-939. doi: 10.1111/tpj.16725. Epub 2024 Mar 25.
Gibberellins (GAs) are major regulators of developmental and growth processes in plants. Using the degradation-based signaling mechanism of GAs, we have built transcriptional regulator (DELLA)-based, genetically encoded ratiometric biosensors as proxies for hormone quantification at high temporal resolution and sensitivity that allow dynamic, rapid and simple analysis in a plant cell system, i.e. Arabidopsis protoplasts. These ratiometric biosensors incorporate a DELLA protein as a degradation target fused to a firefly luciferase connected via a 2A peptide to a renilla luciferase as a co-expressed normalization element. We have implemented these biosensors for all five Arabidopsis DELLA proteins, GA-INSENSITIVE, GAI; REPRESSOR-of-ga1-3, RGA; RGA-like1, RGL1; RGL2 and RGL3, by applying a modular design. The sensors are highly sensitive (in the low pm range), specific and dynamic. As a proof of concept, we have tested the applicability in three domains: the study of substrate specificity and activity of putative GA-oxidases, the characterization of GA transporters, and the use as a discrimination platform coupled to a GA agonists' chemical screening. This work demonstrates the development of a genetically encoded quantitative biosensor complementary to existing tools that allow the visualization of GA in planta.
赤霉素(GAs)是植物发育和生长过程的主要调节剂。我们利用 GAs 的基于降解的信号机制,构建了基于转录调控因子(DELLA)的、遗传编码的比率型生物传感器,作为激素定量的替代物,具有高时间分辨率和灵敏度,可以在植物细胞系统(如拟南芥原生质体)中进行动态、快速和简单的分析。这些比率型生物传感器将 DELLA 蛋白作为降解靶标融合到萤火虫荧光素酶中,通过 2A 肽连接到海肾荧光素酶作为共表达的归一化元件。我们通过应用模块化设计,为所有五个拟南芥 DELLA 蛋白,即 GA-不敏感(GA-INSENSITIVE)、GAI;抑制 GA1-3 的蛋白(REPRESSOR-of-ga1-3)、RGA;RGA-like1(RGL1);RGL2 和 RGL3,实现了这些生物传感器的构建。这些传感器具有高灵敏度(低至 pm 范围)、特异性和动态性。作为概念验证,我们在三个领域测试了其适用性:研究假定的 GA 氧化酶的底物特异性和活性、GA 转运蛋白的表征,以及作为与 GA 激动剂化学筛选偶联的鉴别平台的应用。这项工作展示了一种遗传编码定量生物传感器的开发,它是对现有工具的补充,可用于在植物体内可视化 GA。