Unverified paper record
A new method to quantify the spatiotemporal localization of SnRK1.1
bioRxiv · 19 Apr 2025 · 10.1101/2025.04.14.648863
Abstract
Maintaining energy homeostasis is a major challenge for plants in the current context of climate change. The Sucrose-non fermenting 1 (SNF1)-related kinase 1 (SnRK1) complex, a member of the SNF1-AMP-activated protein kinase (AMPK)-SnRK1 family of kinase complexes, is a central player in the regulation of cell energy homeostasis. The α-subunit of the complex, which possesses kinase activity and is known as SnRK1.1 or KIN10, plays a role in sensing energy status and coordinating metabolic reprogramming to counter any energy imbalance. The discovery of a dual and dynamic intracellular distribution of SnRK1.1 suggests that the activity and function of SnRK1 might be regulated by spatiotemporal changes. To investigate the spatiotemporal distribution of SnRK1.1, we developed a protocol to quantify its intracellular distribution using fluorescence confocal images acquired along the z-axis in plants expressing SnRK1.1–eGFP. Using the open-source software Fiji/ImageJ, we calculated the ratio between nuclear and non-nuclear SnRK1.1 fractions and defined this as the N/ER index. We validated our method by analyzing the response of SnRK1.1 to photosynthesis inhibition by DCMU, including changes in protein levels and phosphorylation status. In addition, comparison with results obtained using a commercial software-based approach confirmed the compatibility of the N/ER index with different segmentation and quantification tools. Originally designed for leaf tissue images, this protocol can be broadly applied to assess the role of intracellular spatiotemporal changes in a wide range of kinases or fluorescently tagged recombinant proteins. Finally, SnRK1.1 intracellular distribution may also serve as a proxy to assess changes in cellular energy status. One sentence summary New method to track SnRK1.1 distribution and changes in plant cell energy status
Plant phenotyping relevance
植物細胞内の蛍光画像からSnRK1.1の核/非核分布を定量する画像解析プロトコルを開発し、検証・他ソフトウェアとの比較も行っており、植物状態の測定法が中心である。
abstractwe developed a protocol to quantify its intracellular distribution using fluorescence confocal images acquired along the z-axis in plants expressing SnRK1.1–eGFP.
abstractWe validated our method by analyzing the response of SnRK1.1 to photosynthesis inhibition by DCMU
abstractcomparison with results obtained using a commercial software-based approach confirmed the compatibility of the N/ER index with different segmentation and quantification tools.
Code and data availability
The supplied blocks describe a Fiji/ImageJ and IMARIS-based protocol for quantifying SnRK1.1 intracellular distribution, but contain no public phenotype/trait datasets, image deposits, author analysis code, macros, or trained models with an explicit availability statement or URL. Supplementary tables referenced are not
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