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

Cell Stress & Chaperones
|August 19, 2010
PubMed

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.