Related Experiment Video
Updated: Jun 6, 2026

Detection of Protease Activity by Fluorescent Peptide Zymography
Published on: January 20, 2019
Shedding light on plant proteolysis: genetically encoded fluorescent sensors as tools for profiling protease
Álvaro Daniel Fernández-Fernández1,2, Simon Tack1,2, Matthias Van Durme1,2
1Department of Plant Biotechnology and Bioinformatics, Ghent University, Ghent 9052, Belgium.
Abstract:
Proteolysis is a universal process, as proteases play a pivotal role in modulating numerous signaling pathways. Proteases control the fate and function of their target proteins by hydrolyzing peptide bonds within these proteins. Understanding the temporal and spatial dynamics of proteolytic events, including the proteases that execute them, is crucial for elucidating their particular roles across diverse biological processes. In this study, we developed and characterized a set of genetically encoded Förster resonance energy transfer (FRET)-based reporters for the detection of various proteolytic activities in plants. Our sensors reliably reported the activity of specific proteases, exhibiting a performance comparable to previously established detection systems. In addition, we engineered variants capable of detecting the spatial dynamics of metacaspase-triggered proteolysis after wounding and during programmed cell death in roots. We demonstrated the feasibility of these FRET-based sensors for detecting various activities in vivo with high spatiotemporal resolution. The implementation of these tools in plant research opens opportunities to explore proteolytic mechanisms with enhanced precision. Overall, these biosensors constitute a versatile toolbox for probing protease function within its native cellular context, paving the way for deeper insights into plant biology and signaling.

