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Updated: Mar 18, 2026

Detecting the Ligand-binding Domain Dimerization Activity of Estrogen Receptor Alpha Using the Mammalian Two-Hybrid Assay
Published on: December 19, 2018
Artonin E and Structural Analogs from Artocarpus Species Abrogates Estrogen Receptor Signaling in Breast Cancer
Imaobong Etti1,2, Rasedee Abdullah3, Najihah Mohd Hashim4
1Pharmacology and Toxicology, Faculty of Veterinary Medicine, Universiti Putra Malaysia, Serdang 43400, Malaysia. ettiimaobong@gmail.com.
Abstract:
The increasing rate of mortality ensued from breast cancer has encouraged research into safer and efficient therapy. The human Estrogen receptor α has been implicated in the majority of reported breast cancer cases. Molecular docking employing Glide, Schrodinger suite 2015, was used to study the binding affinities of small molecules from the Artocarpus species after their drug-like properties were ascertained. The structure of the ligand-binding domain of human Estrogen receptor α was retrieved from Protein Data Bank while the structures of compounds were collected from PubChem database. The binding interactions of the studied compounds were reported as well as their glide scores. The best glide scored ligand, was Artonin E with a score of -12.72 Kcal when compared to other studied phytomolecules and it evoked growth inhibition of an estrogen receptor positive breast cancer cells in submicromolar concentration (3.8-6.9 µM) in comparison to a reference standard Tamoxifen (18.9-24.1 µM) within the tested time point (24-72 h). The studied ligands, which had good interactions with the target receptor, were also drug-like when compared with 95% of orally available drugs with the exception of Artoelastin, whose predicted physicochemical properties rendered it less drug-like. The in silico physicochemical properties, docking interactions and growth inhibition of the best glide scorer are indications of the anti-breast cancer relevance of the studied molecules.
Insights
Researchers explored Artocarpus species compounds for breast cancer therapy. Artonin E showed significant potential, inhibiting estrogen receptor-positive breast cancer cell growth more effectively than Tamoxifen in preliminary studies.
Area of Science:
- Pharmacology
- Medicinal Chemistry
- Computational Biology
Background:
- Breast cancer mortality rates necessitate novel therapeutic strategies.
- The human Estrogen Receptor alpha (ERα) is a key target in many breast cancers.
- Phytochemicals offer a promising avenue for drug discovery.
Purpose of the Study:
- To investigate the anti-breast cancer potential of Artocarpus species compounds.
- To evaluate the binding affinity of these compounds to the human ERα using molecular docking.
- To assess the drug-like properties and in vitro efficacy of promising candidates.
Main Methods:
- Molecular docking simulations using Glide (Schrodinger suite 2015).
- Retrieval of ERα ligand-binding domain structure from Protein Data Bank.
- Collection and analysis of Artocarpus compound structures from PubChem.
- In vitro evaluation of cell growth inhibition for selected compounds.
Main Results:
- Artonin E exhibited the highest binding affinity to ERα with a glide score of -12.72 Kcal.
- Artonin E demonstrated potent growth inhibition of ERα-positive breast cancer cells (3.8-6.9 µM).
- Most studied Artocarpus compounds possessed favorable drug-like properties, comparable to 95% of oral drugs.
Conclusions:
- Artonin E is a promising lead compound for developing novel anti-breast cancer therapies targeting ERα.
- The Artocarpus species represent a valuable source of potential anti-cancer drug candidates.
- In silico and in vitro findings support the anti-breast cancer relevance of these phytomolecules.
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