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Updated: Jul 24, 2025

Kinase Inhibitor Screening In Self-assembled Human Protein Microarrays
Published on: October 23, 2019
Identification of novel c-Kit inhibitors from natural sources using virtual screening and molecular dynamics
Abdelbaset Mohamed Elasbali1,2, Waleed Abu Al-Soud3, Elyasa Mustafa Elfaki1
1Department of Clinical Laboratory Science, College of Applied Sciences-Qurayyat, Jouf University, Sakakah, Saudi Arabia.
Abstract:
The Mast/Stem cell growth factor receptor Kit (c-Kit), a Proto-oncogene c-Kit, is a tyrosine-protein kinase involved in cell differentiation, proliferation, migration, and survival. Its role in developing certain cancers, particularly gastrointestinal stromal tumors (GISTs) and acute myeloid leukemia (AML), makes it an attractive therapeutic target. Several small molecule inhibitors targeting c-Kit have been developed and approved for clinical use. Recent studies have focused on identifying and optimizing natural compounds as c-Kit inhibitors employing virtual screening. Still, drug resistance, off-target side effects, and variability in patient response remain significant challenges. From this perspective, phytochemicals could be an important resource for discovering novel c-Kit inhibitors with less toxicity, improved efficacy, and high specificity. This study aimed to uncover possible c-Kit inhibitors by utilizing a structure-based virtual screening of active phytoconstituents from Indian medicinal plants. Through the screening stages, two promising candidates, Anilinonaphthalene and Licoflavonol, were chosen based on their drug-like features and ability to bind to c-Kit. These chosen candidates were subjected to all-atom molecular dynamics (MD) simulations to evaluate their stability and interaction with c-Kit. The selected compounds Anilinonaphthalene from Daucus carota and Licoflavonol from Glycyrrhiza glabra showed their potential to act as selective binding partners of c-Kit. Our results suggest that the identified phytoconstituents could serve as a starting point to develop novel c-Kit inhibitors for developing new and effective therapies against multiple cancers, including GISTs and AML. The use of virtual screening and MD simulations provides a rational approach to discovering potential drug candidates from natural sources.Communicated by Ramaswamy H. Sarma.
Insights
Researchers identified Anilinonaphthalene and Licoflavonol from Indian plants as potential c-Kit inhibitors. These natural compounds show promise for developing new cancer therapies against GISTs and AML with fewer side effects.
Area of Science:
- Biochemistry and Molecular Biology
- Pharmacology and Drug Discovery
- Computational Chemistry
Background:
- The c-Kit receptor tyrosine kinase is implicated in cancers like GISTs and AML, making it a key therapeutic target.
- Existing small molecule inhibitors face challenges including drug resistance, side effects, and patient response variability.
- Phytochemicals offer a promising avenue for discovering novel c-Kit inhibitors with improved efficacy and specificity.
Purpose of the Study:
- To identify potential c-Kit inhibitors from active phytoconstituents of Indian medicinal plants using structure-based virtual screening.
- To evaluate the drug-like properties and binding capabilities of selected natural compounds against c-Kit.
- To assess the stability and interaction of promising candidates with c-Kit through molecular dynamics simulations.
Main Methods:
- Structure-based virtual screening of phytoconstituents from Indian medicinal plants.
- Selection of candidate compounds based on drug-like features and binding affinity to c-Kit.
- All-atom molecular dynamics (MD) simulations to analyze the stability and interactions of selected compounds with c-Kit.
Main Results:
- Two phytoconstituents, Anilinonaphthalene (from Daucus carota) and Licoflavonol (from Glycyrrhiza glabra), were identified as promising c-Kit inhibitors.
- Both compounds demonstrated favorable drug-like properties and significant binding potential to c-Kit.
- MD simulations confirmed the stability and specific binding interactions of Anilinonaphthalene and Licoflavonol with c-Kit.
Conclusions:
- Anilinonaphthalene and Licoflavonol are potential lead compounds for developing novel c-Kit inhibitors.
- These identified phytoconstituents could form the basis for new therapies against c-Kit-driven cancers like GISTs and AML.
- Virtual screening and MD simulations provide an effective strategy for discovering natural drug candidates.
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