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Identification of Novel GANT61 Analogs with Activity in Hedgehog Functional Assays and GLI1-Dependent Cancer Cells
Dina Abu Rabe1, Lhoucine Chdid2, David R Lamson2
1INBS PhD Program, North Carolina Central University, Durham, NC 27707, USA.
Abstract:
Aberrant activation of hedgehog (Hh) signaling has been implicated in various cancers. Current FDA-approved inhibitors target the seven-transmembrane receptor Smoothened, but resistance to these drugs has been observed. It has been proposed that a more promising strategy to target this pathway is at the GLI1 transcription factor level. GANT61 was the first small molecule identified to directly suppress GLI-mediated activity; however, its development as a potential anti-cancer agent has been hindered by its modest activity and aqueous chemical instability. Our study aimed to identify novel GLI1 inhibitors. JChem searches identified fifty-two compounds similar to GANT61 and its active metabolite, GANT61-D. We combined high-throughput cell-based assays and molecular docking to evaluate these analogs. Five of the fifty-two GANT61 analogs inhibited activity in Hh-responsive C3H10T1/2 and Gli-reporter NIH3T3 cellular assays without cytotoxicity. Two of the GANT61 analogs, BAS 07019774 and Z27610715, reduced Gli1 mRNA expression in C3H10T1/2 cells. Treatment with BAS 07019774 significantly reduced cell viability in Hh-dependent glioblastoma and lung cancer cell lines. Molecular docking indicated that BAS 07019774 is predicted to bind to the ZF4 region of GLI1, potentially interfering with its ability to bind DNA. Our findings show promise in developing more effective and potent GLI inhibitors.
Insights
Researchers identified novel GLI1 inhibitors to target cancer. Two compounds, BAS 07019774 and Z27610715, show promise by reducing Gli1 mRNA and cancer cell viability, offering potential new cancer therapies.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Aberrant hedgehog (Hh) signaling drives cancer development.
- Current Smoothened inhibitors face resistance issues.
- Targeting the GLI1 transcription factor presents a promising alternative strategy.
Purpose of the Study:
- To identify novel GLI1 inhibitors with improved efficacy and stability.
- To evaluate GANT61 analogs for their potential as anti-cancer agents.
Main Methods:
- Utilized JChem database for structure-based compound searching.
- Employed high-throughput cell-based assays to screen GANT61 analogs.
- Applied molecular docking simulations to predict binding interactions.
Main Results:
- Five GANT61 analogs inhibited Hh pathway activity without cytotoxicity.
- Two analogs, BAS 07019774 and Z27610715, reduced Gli1 mRNA expression.
- BAS 07019774 demonstrated significant anti-cancer effects in glioblastoma and lung cancer cells.
- Molecular docking suggested BAS 07019774 binds to GLI1's ZF4 domain, inhibiting DNA binding.
Conclusions:
- Identified promising novel GLI1 inhibitors, BAS 07019774 and Z27610715.
- BAS 07019774 shows potential for developing more effective cancer therapies targeting Hh signaling.
- Further development of these GLI1 inhibitors could overcome current therapeutic limitations.
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