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Updated: Sep 6, 2025

Evaluating the Angiogenetic Properties of Ovarian Cancer Stem-Like Cells using the Three-Dimensional Co-Culture System, NICO-1
Published on: December 5, 2020
Multiple Components of Protein Homeostasis Pathway Can Be Targeted to Produce Drug Synergies with VCP Inhibitors in
Prabhakar Bastola1, Gary S Leiserowitz2, Jeremy Chien2,3
1Department of Pharmacology, Toxicology & Therapeutics, University of Kansas Medical Center, Kansas City, KS 66160, USA.
Abstract:
Protein quality control mechanisms play an important role in cancer progression by providing adaptive responses and morphologic stability against genome-wide copy number alterations, aneuploidy, and conformation-altering somatic mutations. This dependency on protein quality control mechanisms creates a vulnerability that may be exploited for therapeutic benefits by targeting components of the protein quality control mechanism. Recently, valosin-containing protein (VCP), also known at p97 AAA-ATPase, has emerged as a druggable target in cancer cells to affect their dependency on protein quality control. Here, we show that VCP inhibitors induce cytotoxicity in several ovarian cancer cell lines and these compounds act synergistically with mifepristone, a drug previously shown to induce an atypical unfolded protein response. Although mifepristone at a clinically achievable dose induces a weak unfolded protein response, it enhances the cytotoxic effects of VCP inhibitor CB-5083. Mechanistically, mifepristone blocks the cytoprotective effect of ATF6 in response to endoplasmic reticulum (ER) stress while activating the cytotoxic effects of ATF4 and CHOP through the HRI (EIF2AK1)-mediated signal transduction pathway. In contrast, CB-5083 activates ATF4 and CHOP through the PERK (EIF2AK3)-mediated signaling pathway. This combination activates ATF4 and CHOP while blocking the adaptive response provided by ATF6, resulting in increased cytotoxic effects and synergistic drug interaction.
Insights
Targeting protein quality control with VCP inhibitors and mifepristone shows synergistic cytotoxicity in ovarian cancer. This combination disrupts adaptive ER stress responses, offering a potential new cancer therapy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Protein quality control (PQC) mechanisms are crucial for cancer cell adaptation and survival against genomic instability.
- Valosin-containing protein (VCP/p97 AAA-ATPase) is a key component of PQC and a potential therapeutic target in cancer.
Purpose of the Study:
- To investigate the therapeutic potential of targeting VCP in ovarian cancer.
- To explore the synergistic effects of VCP inhibitors and mifepristone in ovarian cancer cells.
Main Methods:
- Treatment of ovarian cancer cell lines with VCP inhibitor CB-5083 and mifepristone.
- Analysis of cytotoxicity and unfolded protein response (UPR) pathways, including ATF6, ATF4, CHOP, HRI (EIF2AK1), and PERK (EIF2AK3).
Main Results:
- VCP inhibitor CB-5083 demonstrated cytotoxicity in ovarian cancer cells.
- CB-5083 and mifepristone exhibited synergistic cytotoxic effects.
- Mifepristone blocked the cytoprotective ATF6 pathway while enhancing ATF4/CHOP activation via HRI.
- CB-5083 activated ATF4/CHOP via PERK, leading to combined cytotoxic effects.
Conclusions:
- Combining VCP inhibition with mifepristone enhances anti-cancer cytotoxicity by modulating UPR signaling.
- This combination therapy disrupts adaptive PQC and ER stress responses, presenting a promising strategy for ovarian cancer treatment.
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