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用于分析植物原生质体信号转导和代谢的比率型赤霉素生物传感器。

Ratiometric gibberellin biosensors for the analysis of signaling dynamics and metabolism in plant protoplasts.

机构信息

Institute of Synthetic Biology, Heinrich-Heine-Universität Düsseldorf, Düsseldorf, Germany.

Faculty of Biology, University of Freiburg, Freiburg, Germany.

出版信息

Plant J. 2024 May;118(4):927-939. doi: 10.1111/tpj.16725. Epub 2024 Mar 25.

DOI:10.1111/tpj.16725
PMID:38525669
Abstract

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.

摘要

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。

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1
Ratiometric gibberellin biosensors for the analysis of signaling dynamics and metabolism in plant protoplasts.用于分析植物原生质体信号转导和代谢的比率型赤霉素生物传感器。
Plant J. 2024 May;118(4):927-939. doi: 10.1111/tpj.16725. Epub 2024 Mar 25.
2
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Arabidopsis RGL1 encodes a negative regulator of gibberellin responses.拟南芥RGL1编码一种赤霉素反应的负调控因子。
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DELLA proteins and their interacting RING Finger proteins repress gibberellin responses by binding to the promoters of a subset of gibberellin-responsive genes in Arabidopsis.DELLA 蛋白及其相互作用的 RING 指蛋白通过与拟南芥中一组受赤霉素应答基因的启动子结合来抑制赤霉素反应。
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Evidence that the Arabidopsis nuclear gibberellin signalling protein GAI is not destabilised by gibberellin.拟南芥核赤霉素信号蛋白GAI不会因赤霉素而不稳定的证据。
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The Arabidopsis F-box protein SLEEPY1 targets gibberellin signaling repressors for gibberellin-induced degradation.拟南芥F-box蛋白SLEEPY1将赤霉素信号转导抑制因子作为赤霉素诱导降解的靶标。
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DELLA proteins negatively regulate dark-induced senescence and chlorophyll degradation in Arabidopsis through interaction with the transcription factor WRKY6.DELLA 蛋白通过与转录因子 WRKY6 相互作用,负调控拟南芥暗诱导的衰老和叶绿素降解。
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The six conserved serine/threonine sites of REPRESSOR OF ga1-3 protein are important for its functionality and stability in gibberellin signaling in Arabidopsis.REPRESSOR OF ga1-3 蛋白的六个保守丝氨酸/苏氨酸位点对于其在拟南芥赤霉素信号转导中的功能和稳定性非常重要。
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Cytosolic activity of SPINDLY implies the existence of a DELLA-independent gibberellin-response pathway.SPINDLY的胞质活性意味着存在一条不依赖DELLA的赤霉素反应途径。
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Role of the gibberellin receptors GID1 during fruit-set in Arabidopsis.拟南芥中赤霉素受体GID1在坐果过程中的作用。
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