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The SMAC mimetic GDC-0152 is a direct ABCB1-ATPase activity modulator and BIRC5 expression suppressor in cancer cells
I-Li Lin1, Yu-Ting Lin2, Yung-Chieh Chang3
1Department of Radiology, Ditmanson Medical Foundation Chia-Yi Christian Hospital, Chiayi 600566, Taiwan.
Abstract:
Upregulation of the multidrug efflux pump ABCB1/MDR1 (P-gp) and the anti-apoptotic protein BIRC5/Survivin promotes multidrug resistance in various human cancers. GDC-0152 is a DIABLO/SMAC mimetic currently being tested in patients with solid tumors. However, it is still unclear whether GDC-0152 is therapeutically applicable for patients with ABCB1-overexpressing multidrug-resistant tumors, and the molecular mechanism of action of GDC-0152 in cancer cells is still incompletely understood. In this study, we found that the potency of GDC-0152 is unaffected by the expression of ABCB1 in cancer cells. Interestingly, through in silico and in vitro analysis, we discovered that GDC-0152 directly modulates the ABCB1-ATPase activity and inhibits ABCB1 multidrug efflux activity at sub-cytotoxic concentrations (i.e., 0.25×IC50 or less). Further investigation revealed that GDC-0152 also decreases BIRC5 expression, induces mitophagy, and lowers intracellular ATP levels in cancer cells at low cytotoxic concentrations (i.e., 0.5×IC50). Co-treatment with GDC-0152 restored the sensitivity to the known ABCB1 substrates, including paclitaxel, vincristine, and YM155 in ABCB1-expressing multidrug-resistant cancer cells, and it also restored the sensitivity to tamoxifen in BIRC5-overexpressing tamoxifen-resistant breast cancer cells in vitro. Moreover, co-treatment with GDC-0152 restored and potentiated the anticancer effects of paclitaxel in ABCB1 and BIRC5 co-expressing xenograft tumors in vivo. In conclusion, GDC-0152 has the potential for use in the management of cancer patients with ABCB1 and BIRC5-related drug resistance. The findings of our study provide essential information to physicians for designing a more patient-specific GDC-0152 clinical trial program in the future.
Insights
GDC-0152 overcomes multidrug resistance by inhibiting ABCB1 efflux and BIRC5 expression in cancer cells. This drug candidate shows potential for treating patients with ABCB1/BIRC5-related drug resistance.
Area of Science:
- Oncology
- Pharmacology
- Molecular Biology
Background:
- Multidrug resistance (MDR) in cancer is often driven by ABCB1 (P-gp) efflux pumps and BIRC5 (Survivin) anti-apoptotic protein.
- GDC-0152, a DIABLO/SMAC mimetic, is under investigation for solid tumors, but its efficacy in MDR contexts is unclear.
Purpose of the Study:
- To investigate the therapeutic potential of GDC-0152 in ABCB1-overexpressing multidrug-resistant cancers.
- To elucidate the molecular mechanisms underlying GDC-0152's action in cancer cells.
Main Methods:
- In silico and in vitro analyses of GDC-0152's effect on ABCB1 activity and BIRC5 expression.
- Assessment of GDC-0152's impact on mitophagy and intracellular ATP levels.
- In vitro and in vivo studies evaluating GDC-0152 in combination with chemotherapy agents.
Main Results:
- GDC-0152 directly inhibits ABCB1-ATPase activity and multidrug efflux at sub-cytotoxic concentrations.
- GDC-0152 reduces BIRC5 expression, induces mitophagy, and lowers ATP levels in cancer cells.
- GDC-0152 restores sensitivity to chemotherapy drugs in MDR cancer cells and potentiates paclitaxel efficacy in vivo.
Conclusions:
- GDC-0152 demonstrates potential for managing cancers with ABCB1 and BIRC5-mediated drug resistance.
- Findings support patient-specific clinical trial design for GDC-0152 in resistant cancers.
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