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Cyclophilin Inhibitor Rencofilstat Combined with Proteasome Inhibitor Ixazomib Increases Proteotoxic Cell Death in
Carlos Perez-Stable1,2,3,4,5, Alicia de Las Pozas1, Medhi Wangpaichitr1,2,3,5,6
1Research Service, Bruce W. Carter Veterans Affairs Medical Center, Miami, FL 33125, USA.
Abstract:
Background/Objective: Proteotoxic stress induced by inhibitors of the ubiquitin-proteasome system has been successful in multiple myeloma but not in solid cancers such as prostate cancer. Our objective is to find a combination with proteasome inhibitors that increases apoptotic cell death in all types of prostate cancer without harming non-cancer cells. Methods: The effectiveness of rencofilstat, a pan-cyclophilin inhibitor, combined with the ixazomib proteasome inhibitor, was investigated in multiple prostate cancer and non-cancer cells. Inducible knockdown of stress response XBP1s and cyclophilins A/B and inducible expression of XBP1s and cyclophilin B were developed in prostate cancer to determine functional roles. Results: Rencofilstat + ixazomib increased apoptotic cell death in prostate cancer but not in non-cancer cells. We investigated the effects on XBP1s and PERK, important unfolded protein response factors required for cells to survive proteotoxic stress. The results revealed that XBP1s had a pro-survival role early, but maintenance at later times of rencofilstat + ixazomib treatment resulted in cell death. In addition, decreased PERK and phospho-eIF2α likely maintained protein synthesis to further enhance proteotoxic stress. In contrast, rencofilstat + ixazomib did not alter XBP1s or PERK in non-cancer cells. Additional genetic experiments showed that the RCF targets cyclophilins A, B, and D had protective effects. Rencofilstat increased extracellular secretion of cyclophilin B, but rencofilstat + ixazomib reduced glycosylation and, likely, the biological function of CD147 (CypB receptor) and decreased downstream ERK signaling. Conclusions: Rencofilstat + ixazomib may be a new strategy for increasing proteotoxic stress and apoptotic cell death in advanced prostate cancer cells with less toxic side effects.
Insights
Rencofilstat combined with ixazomib proteasome inhibitor effectively increased cancer cell death in prostate cancer models. This combination shows promise for treating advanced prostate cancer with reduced side effects.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Proteasome inhibitor therapy is effective in multiple myeloma but not solid tumors like prostate cancer.
- Developing novel therapeutic combinations is crucial to overcome resistance in prostate cancer.
- Targeting proteotoxic stress pathways offers a potential strategy for cancer treatment.
Purpose of the Study:
- To identify a combination therapy that enhances apoptotic cell death in prostate cancer cells.
- To investigate the efficacy of rencofilstat (pan-cyclophilin inhibitor) and ixazomib (proteasome inhibitor) combination.
- To ensure the combination therapy spares non-cancerous cells.
Main Methods:
- Investigated rencofilstat + ixazomib in prostate cancer and non-cancer cell lines.
- Utilized inducible knockdown/expression systems for XBP1s and cyclophilins.
- Analyzed effects on unfolded protein response factors (XBP1s, PERK) and downstream signaling pathways.
Main Results:
- Rencofilstat + ixazomib significantly increased apoptotic cell death in prostate cancer cells, sparing non-cancer cells.
- XBP1s played a dual role: pro-survival early, but essential for cell death upon sustained treatment.
- The combination decreased PERK signaling and affected CD147 glycosylation, enhancing proteotoxic stress.
Conclusions:
- Rencofilstat + ixazomib represents a potential new strategy for advanced prostate cancer.
- This combination enhances proteotoxic stress and apoptotic cell death.
- The therapy demonstrated reduced toxicity to non-cancer cells.
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