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Updated: Jan 26, 2026

ATAC-Seq Optimization for Cancer Epigenetics Research
Published on: June 30, 2022
Epigenetic Modulators as Potential Multi-targeted Drugs Against Hedgehog Pathway for Treatment of Cancer
Anshika N Singh1, Neeti Sharma2
1Symbiosis School of Biological Sciences, Symbiosis International (Deemed University), Gram-Lavale, Taluka-Mulshi, Pune, 412115, India.
Abstract:
The Sonic hedgehog signalling is known to play a crucial role in regulating embryonic development, cancer stem cell maintenance and tissue patterning. Dysregulated hedgehog signalling has been reported to affect tumorigenesis and drug response in various human malignancies. Epigenetic therapy relying on DNA methyltransferase and Histone deacetylase inhibitors are being proposed as potential drug candidates considering their efficiency in preventing development of cancer progenitor cells, killing drug resistant cells and also dictating "on/off" switch of tumor suppressor genes and oncogenes. In this docking approach, epigenetic modulators were virtually screened for their efficiency in inhibiting key regulators of SHH pathway viz., sonic hedgehog, Smoothened and Gli using polypharmacological approach. The control drugs and epigenetic modulators were docked with PDB protein structures using AutoDock vina and further checked for their drug-likeness properties. Further molecular dynamics simulation using VMD and NAMD, and MMP/GBSA energy calculation were employed for verifying the stability and entropy of the ligand-receptor complex. EPZ-6438 and GSK 343 (EZH2 inhibitors), CHR 3996 and Mocetinostat (HDAC inhibitors), GSK 126 (HKMT inhibitor) and UNC 1215 (L3MBTL3 antagonist) exhibited multiple-targeted approach in modulating HH signalling. This is the first study to report these epigenetic drugs as potential multi-targeted hedgehog pathway inhibitors. Thus, epigenetic polypharmacology approach can be explored as a better alternative to challenges of acute long term toxicity and drug resistance occurring due to traditional single targeted chemotherapy in the future.
Insights
Epigenetic drugs can target multiple components of the Sonic hedgehog (SHH) pathway, offering a new strategy against cancer. This polypharmacology approach may overcome resistance and toxicity associated with traditional chemotherapy.
Area of Science:
- Molecular Biology
- Pharmacology
- Oncology
Background:
- Sonic hedgehog (SHH) signaling is vital for embryonic development and implicated in cancer stem cell maintenance and tumorigenesis.
- Dysregulation of SHH signaling impacts cancer progression and drug resistance in various malignancies.
- Epigenetic therapies, including DNA methyltransferase and histone deacetylase inhibitors, show promise in cancer treatment.
Purpose of the Study:
- To virtually screen epigenetic modulators for their potential to inhibit key regulators of the SHH pathway.
- To investigate the multi-targeted inhibition of the SHH pathway using a polypharmacological approach with epigenetic drugs.
Main Methods:
- Virtual screening using AutoDock Vina for docking epigenetic modulators with SHH pathway proteins (sonic hedgehog, Smoothened, Gli).
- Assessment of drug-likeness properties and molecular dynamics simulations (VMD, NAMD) for stability and binding energy calculations (MMP/GBSA).
Main Results:
- Several epigenetic drugs, including EZH2 inhibitors (EPZ-6438, GSK 343), HDAC inhibitors (CHR 3996, Mocetinostat), an HKMT inhibitor (GSK 126), and an L3MBTL3 antagonist (UNC 1215), demonstrated multi-targeted inhibition of the SHH pathway.
- These epigenetic drugs exhibited potential for a polypharmacological approach against SHH signaling.
Conclusions:
- This study identifies epigenetic drugs as potential multi-targeted inhibitors of the hedgehog pathway.
- Epigenetic polypharmacology presents a promising alternative to conventional single-targeted chemotherapy, potentially mitigating toxicity and drug resistance.
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