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Oligopeptide Competition Assay for Phosphorylation Site Determination
Published on: May 18, 2017
Structure-based identification and experimental evaluation of Oroxin A as a FYN kinase inhibitor
Vipul Agarwal1, Chaitany Jayprakash Raorane2, Anugya Gupta3
1Moradabad Educational Trust Group of Institutions Faculty of Pharmacy, Ram Ganga Vihar Phase-II, Moradabad, U.P., 244001, India.
Abstract:
FYN, a member of the Src family kinases (SFKs) and a non-receptor tyrosine kinase, plays a critical role in signal transduction within the nervous system and is instrumental in the activation and development of T lymphocytes. While the biological significance of FYN kinase in various cellular processes is well recognized, its potential as a therapeutic target remains largely unexplored. In this study, we investigated the potential of natural products (NPs) as preferential inhibitors of FYN kinase. A library of over 3500 NPs was screened for binding affinity with FYN kinase (PDB: 2DQ7) using XGlide docking simulations. The fourteen NPs with the highest docking scores were selected for further analysis. Their interactions with FYN kinase were evaluated through MM-GBSA calculations, and ADMET profiling was performed using SwissADME and pkCSM tools to assess pharmacokinetic properties. Molecular dynamics (MD) simulations using Desmond further confirmed the stability of FYN-NP complexes in solvent environments. Of the top fourteen NPs, only oroxin A demonstrated favorable drug-like properties and sustained stable binding to FYN kinase, as evidenced by MD simulations. Moreover, in vitro kinase inhibition assays revealed that oroxin A exhibited dose-dependent inhibition of FYN kinase. Additionally, C. elegans viability assays confirmed its low toxicity. Moreover, cross-docking revealed that although oroxin A binds to multiple SFKs due to conserved ATP binding pocket, it displayed stronger binding toward FYN, suggesting binding preference over FYN. This study provides a comprehensive evaluation of NPs as potential FYN kinase inhibitors and identifies oroxin A as a natural compound with preliminary evidence of FYN inhibition, warranting further validation.
Insights
Natural products were screened as FYN kinase inhibitors. Oroxin A showed promising FYN kinase inhibition and favorable drug-like properties, suggesting its potential as a therapeutic agent for FYN-related conditions.
Area of Science:
- Biochemistry
- Pharmacology
- Computational Chemistry
Background:
- FYN kinase, a Src family kinase (SFK), is crucial for nervous system signaling and T lymphocyte activation.
- Despite its biological importance, FYN kinase remains an underexplored therapeutic target.
- Natural products (NPs) offer a rich source for novel therapeutic agents.
Purpose of the Study:
- To identify natural products as potential preferential inhibitors of FYN kinase.
- To evaluate the drug-like properties and binding stability of identified compounds.
- To validate the inhibitory activity and safety profile of lead compounds.
Main Methods:
- Screening of over 3500 NPs using XGlide docking against FYN kinase (PDB: 2DQ7).
- In-depth analysis of top candidates using MM-GBSA, ADMET profiling (SwissADME, pkCSM), and molecular dynamics (MD) simulations (Desmond).
- In vitro kinase inhibition assays and C. elegans toxicity assays.
Main Results:
- Oroxin A demonstrated stable binding to FYN kinase and favorable pharmacokinetic properties.
- MD simulations confirmed the stability of the FYN-oxoxin A complex.
- In vitro assays showed dose-dependent inhibition of FYN kinase by oroxin A with low toxicity in C. elegans.
- Cross-docking indicated oroxin A's binding preference for FYN over other SFKs.
Conclusions:
- Oroxin A is a promising natural product inhibitor of FYN kinase.
- This study highlights the potential of NPs in targeting FYN kinase for therapeutic development.
- Further validation is warranted to explore oroxin A's therapeutic potential.

