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Updated: Jun 10, 2026

Assays for the Degradation of Misfolded Proteins in Cells
Published on: August 28, 2016
A cell-based screen for inhibitors of protein folding and degradation
Frank Boschelli1, Jennifer M Golas, Roseann Petersen
1Department of Oncology, Wyeth Research (now the Center for Integrative Biology and Biotherapeutics, Pfizer R & D), 401 N. Middletown Rd., Pearl River, NY 10965, USA. boschef@wyeth.com
Abstract:
Cancer cells are exposed to external and internal stresses by virtue of their unrestrained growth, hostile microenvironment, and increased mutation rate. These stresses impose a burden on protein folding and degradation pathways and suggest a route for therapeutic intervention in cancer. Proteasome and Hsp90 inhibitors are in clinical trials and a 20S proteasome inhibitor, Velcade, is an approved drug. Other points of intervention in the folding and degradation pathway may therefore be of interest. We describe a simple screen for inhibitors of protein synthesis, folding, and proteasomal degradation pathways in this paper. The molecular chaperone-dependent client v-Src was fused to firefly luciferase and expressed in HCT-116 colorectal tumor cells. Both luciferase and protein tyrosine kinase activity were preserved in cells expressing this fusion construct. Exposing these cells to the Hsp90 inhibitor geldanamycin caused a rapid reduction of luciferase and kinase activities and depletion of detergent-soluble v-Src::luciferase fusion protein. Hsp70 knockdown reduced v-Src::luciferase activity and, when combined with geldanamycin, caused a buildup of v-Src::luciferase and ubiquitinated proteins in a detergent-insoluble fraction. Proteasome inhibitors also decreased luciferase activity and caused a buildup of phosphotyrosine-containing proteins in a detergent-insoluble fraction. Protein synthesis inhibitors also reduced luciferase activity, but had less of an effect on phosphotyrosine levels. In contrast, certain histone deacetylase inhibitors increased luciferase and phosphotyrosine activity. A mass screen led to the identification of Hsp90 inhibitors, ubiquitin pathway inhibitors, inhibitors of Hsp70/Hsp40-mediated refolding, and protein synthesis inhibitors. The largest group of compounds identified in the screen increased luciferase activity, and some of these increase v-Src levels and activity. When used in conjunction with appropriate secondary assays, this screen is a powerful cell-based tool for studying compounds that affect protein synthesis, folding, and degradation.
Insights
This study developed a cell-based screen to identify compounds targeting cancer cell protein homeostasis. The screen effectively identified inhibitors of protein synthesis, folding, and degradation pathways, offering new therapeutic avenues.
Area of Science:
- Molecular Biology
- Cancer Therapeutics
- Drug Discovery
Background:
- Cancer cells face significant stress due to rapid growth and mutations, impacting protein homeostasis.
- Protein folding and degradation pathways are potential targets for cancer therapy, with some inhibitors already in clinical use.
- Exploring novel intervention points in these pathways is crucial for developing new anti-cancer drugs.
Purpose of the Study:
- To develop and validate a novel cell-based screening assay for identifying inhibitors of protein synthesis, folding, and degradation.
- To utilize the assay to identify compounds that disrupt protein homeostasis in cancer cells.
- To assess the efficacy of identified compounds in modulating specific protein targets and cellular activities.
Main Methods:
- A fusion construct of v-Src and firefly luciferase was expressed in HCT-116 colorectal tumor cells.
- The assay measured changes in luciferase and v-Src kinase activity upon treatment with various inhibitors.
- Compounds targeting Hsp90, Hsp70, proteasomes, protein synthesis, and histone deacetylases were tested.
Main Results:
- Hsp90 inhibition (e.g., geldanamycin) rapidly decreased v-Src::luciferase activity and protein levels.
- Hsp70 knockdown and proteasome inhibition led to the accumulation of insoluble and ubiquitinated proteins.
- Protein synthesis inhibitors reduced luciferase activity, while certain histone deacetylase inhibitors increased it.
Conclusions:
- The developed cell-based screen is a powerful tool for studying compounds affecting protein synthesis, folding, and degradation.
- The screen successfully identified inhibitors of key protein homeostasis pathways, including Hsp90, ubiquitin, and protein synthesis.
- This assay provides a valuable platform for discovering novel anti-cancer agents targeting protein homeostasis.
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