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Updated: Jul 30, 2025

Screening Peptides that Activate MRGPRX2 using Engineered HEK Cells
Published on: November 6, 2021
Development of a cell-free screening assay for the identification of direct PERK activators
Márcia F D Costa1,2, Günter U Höglinger1,2,3, Thomas W Rösler1,4
1Department of Translational Neurodegeneration, German Center for Neurodegenerative Diseases, Munich, Germany.
Abstract:
The activation of the unfolded protein response, particularly via the PERK pathway, has been suggested as a promising therapeutic approach in tauopathies, a group of neurodegenerative disorders characterized by the abnormal phosphorylation and aggregation of tau protein. So far, a shortage of available direct PERK activators has been limiting the progresses in this field. Our study aimed at the development of a cell-free screening assay enabling the detection of novel direct PERK activators. By applying the catalytic domain of recombinant human PERK, we initially determined ideal conditions of the kinase assay reaction, including parameters such as optimal kinase concentration, temperature, and reaction time. Instead of using PERK's natural substrate proteins, eIF2α and NRF2, we applied SMAD3 as phosphorylation-accepting protein and successfully detected cell-free PERK activation and inhibition by selected modulators (e.g., calcineurin-B, GSK2606414). The developed assay revealed to be sufficiently stable and robust to assess an activating EC50-value. Additionally, our results suggested that PERK activation may take place independent of the active site which can be blocked by a kinase inhibitor. Finally, we confirmed the applicability of the assay by measuring PERK activation by MK-28, a recently described PERK activator. Overall, our data show that a cell-free luciferase-based assay with the recombinant human PERK kinase domain and SMAD3 as substrate protein is capable of detecting PERK activation, which enables to screen large compound libraries for direct PERK activators, in a high-throughput-based approach. These activators will be useful for deepening our understanding of the PERK signaling pathway, and may also lead to the identification of new therapeutic drug candidates for neurodegenerative tauopathies.
Insights
Researchers developed a cell-free assay to find new PERK activators for treating tauopathies. This high-throughput screening method uses recombinant PERK and SMAD3 to identify potential therapeutic compounds for neurodegenerative diseases.
Area of Science:
- Neuroscience
- Biochemistry
- Pharmacology
Background:
- Tauopathies are neurodegenerative disorders linked to abnormal tau protein.
- The unfolded protein response (UPR), especially the PERK pathway, is a potential therapeutic target.
- A lack of direct PERK activators has hindered research and drug development.
Purpose of the Study:
- To develop a cell-free screening assay for identifying novel, direct PERK activators.
- To establish a high-throughput method for discovering compounds targeting the PERK pathway.
Main Methods:
- Utilized the catalytic domain of recombinant human PERK in a kinase assay.
- Optimized reaction conditions including kinase concentration, temperature, and time.
- Employed SMAD3 as a substrate protein instead of natural substrates like eIF2α and NRF2.
- Validated the assay using known PERK modulators and a novel activator (MK-28).
Main Results:
- Developed a stable and robust cell-free assay for detecting PERK activation.
- Successfully identified PERK activation and inhibition by selected compounds.
- Demonstrated that PERK activation might occur independently of the active site.
- Confirmed assay applicability with a known PERK activator, MK-28.
Conclusions:
- A cell-free, luciferase-based assay using recombinant PERK and SMAD3 can effectively screen for direct PERK activators.
- This high-throughput assay facilitates the discovery of new therapeutic candidates for tauopathies.
- The findings advance understanding of the PERK signaling pathway and its therapeutic potential.
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