Vorinostat and Simvastatin have synergistic effects on triple-negative breast cancer cells via abrogating Rab7
Xinhui Kou1, Yonghua Yang1, Xiaoxiao Jiang1
1Department of Pharmacology and Biochemistry, School of Pharmacy, Fudan University, 826 Zhangheng Road, Shanghai 201203, China.
Abstract:
Since the lack of targeted treatment, triple-negative breast cancer (TNBC) has poor outcomes. Histone deacetylase inhibitors (HDACi) blocking the activity of specific HDACs have emerged as cancer therapeutic agents. However, the therapeutic efficiency is still not satisfactory for patients with solid tumor. We thus performed screening for the synergistic agents of Vorinostat (SAHA). The resulting candidate Simvastatin was obtained. The efficacy and mechanism of combination have been studied in TNBC cells. The synergism of SAHA and Simvastatin was evaluated by IC50 of proliferation and combination index (CI). The antitumor activities of combination were further evaluated in TNBC cells. The pro-apoptotic effects were determined by flow cytometry and Western blot. Autophagosome-lysosome fusion was monitored using confocal microscope. The underlying mechanism was further studied by over-expressing of wild-type or inactive (C205S/C207S) Rab7 in compounds treated cells. The in vivo efficacy was also evaluated in mice. The combination of SAHA and Simvastatin had potent synergism in apoptosis of TNBC cells. It exerted pro-apoptosis effect by compromising the fusion between autophagosome and lysosome. Over-expressing of wild-type, but not inactive Rab7 rescued cells from apoptosis induced by the combinatory treatments. Mevalonate supplementation also decreased the combinatory treatment-induced apoptosis. These results indicate that the combinatory treatment enhances the apoptosis of TNBC cells by interrupting Rab7 prenylation and obstructing autophagosome-lysosome fusion. Combination between SAHA and Simvastatin could also significantly decrease the tumor growth in xenografted mice by inducing apoptosis and inhibiting Rab7 prenylation. Rab7 is a potential target for the combined effects of Simvastatin and SAHA.
Insights
This study found that combining Vorinostat (SAHA) with Simvastatin synergistically induces apoptosis in triple-negative breast cancer (TNBC) cells by blocking autophagosome-lysosome fusion. This combination also reduced tumor growth in mice, highlighting Rab7 as a potential therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Triple-negative breast cancer (TNBC) lacks targeted treatments, leading to poor patient outcomes.
- Histone deacetylase inhibitors (HDACi) show promise but have limited efficacy in solid tumors.
- Vorinostat (SAHA) is an HDAC inhibitor, but its therapeutic efficiency requires enhancement.
Purpose of the Study:
- To identify synergistic agents that enhance the efficacy of Vorinostat (SAHA) in TNBC.
- To investigate the anti-cancer mechanisms of the SAHA-Simvastatin combination in TNBC cells.
- To evaluate the in vivo efficacy of the combined treatment in a TNBC mouse model.
Main Methods:
- Screening for synergistic agents with SAHA identified Simvastatin.
- Synergism was assessed using IC50 and combination index (CI) assays.
- Apoptosis was measured by flow cytometry and Western blot.
- Autophagosome-lysosome fusion was monitored via confocal microscopy.
- Mechanism explored by Rab7 overexpression and mevalonate supplementation.
- In vivo efficacy tested in xenografted mice.
Main Results:
- SAHA and Simvastatin exhibited potent synergism, significantly increasing apoptosis in TNBC cells.
- The combination treatment compromised autophagosome-lysosome fusion by interrupting Rab7 prenylation.
- Overexpression of wild-type Rab7, but not inactive mutants, rescued cells from apoptosis.
- Mevalonate supplementation reduced apoptosis induced by the combination.
- Significant tumor growth inhibition was observed in vivo.
Conclusions:
- The combination of SAHA and Simvastatin demonstrates potent synergistic anti-cancer activity against TNBC.
- The mechanism involves the interruption of Rab7 prenylation, leading to impaired autophagosome-lysosome fusion and enhanced apoptosis.
- Rab7 is identified as a key mediator and potential therapeutic target for this combination therapy in TNBC.
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