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Quantification of Cellular Proteostasis in Live Cells by Fluorogenic Assay Using the AgHalo Sensor
Matthew Fares1, Xin Zhang1,2,3
1Department of Chemistry, The Pennsylvania State University, University Park, Pennsylvania.
Researchers developed the AgHalo sensor to measure cellular proteostasis (protein balance) and detect protein aggregation caused by stress. This new tool allows for direct visualization and quantification of proteome stress in live cells.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Biology
Background:
- Cellular proteostasis is critical for cell health and survival.
- Environmental stress can disrupt proteostasis, leading to protein aggregation.
- Quantifying proteostasis deficiency in live cells is challenging with existing methods.
Purpose of the Study:
- To develop and present protocols for a novel fluorogenic sensor, AgHalo, to quantify stress-induced proteostasis deficiency.
- To enable visualization and quantification of proteome stress in live cells.
- To facilitate two-color imaging experiments for advanced proteostasis analysis.
Main Methods:
- Development of a fluorogenic sensor (AgHalo) using a destabilized HaloTag variant.
- Utilizing fluorogenic probes that signal soluble oligomer or insoluble aggregate formation.
- Employing fluorescence microplate readers and microscopes for direct fluorescence read-out.
- Establishing protocols for single- and two-color imaging experiments.
Main Results:
- The AgHalo sensor effectively visualizes and quantifies proteome stress in live cells.
- Demonstrated protocols for using AgHalo with various probes for detailed analysis.
- Enabled direct fluorescence read-out, overcoming limitations of always-fluorescent methods.
Conclusions:
- The AgHalo sensor provides a robust method for assessing cellular proteostasis under stress.
- The developed protocols allow for dynamic visualization and quantification of protein aggregation.
- This tool advances the study of cellular stress responses and proteostasis maintenance.
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