» Articles » PMID: 20808434

Optimized Hydrophobic Interactions and Hydrogen Bonding at the Target-ligand Interface Leads the Pathways of Drug-designing

Overview
Journal PLoS One
Date 2010 Sep 3
PMID 20808434
Citations 151
Authors
Affiliations
Soon will be listed here.
Abstract

Background: Weak intermolecular interactions such as hydrogen bonding and hydrophobic interactions are key players in stabilizing energetically-favored ligands, in an open conformational environment of protein structures. However, it is still poorly understood how the binding parameters associated with these interactions facilitate a drug-lead to recognize a specific target and improve drugs efficacy. To understand this, comprehensive analysis of hydrophobic interactions, hydrogen bonding and binding affinity have been analyzed at the interface of c-Src and c-Abl kinases and 4-amino substituted 1H-pyrazolo [3, 4-d] pyrimidine compounds.

Methodology: In-silico docking studies were performed, using Discovery Studio software modules LigandFit, CDOCKER and ZDOCK, to investigate the role of ligand binding affinity at the hydrophobic pocket of c-Src and c-Abl kinase. Hydrophobic and hydrogen bonding interactions of docked molecules were compared using LigPlot program. Furthermore, 3D-QSAR and MFA calculations were scrutinized to quantify the role of weak interactions in binding affinity and drug efficacy.

Conclusions: The in-silico method has enabled us to reveal that a multi-targeted small molecule binds with low affinity to its respective targets. But its binding affinity can be altered by integrating the conformationally favored functional groups at the active site of the ligand-target interface. Docking studies of 4-amino-substituted molecules at the bioactive cascade of the c-Src and c-Abl have concluded that 3D structural folding at the protein-ligand groove is also a hallmark for molecular recognition of multi-targeted compounds and for predicting their biological activity. The results presented here demonstrate that hydrogen bonding and optimized hydrophobic interactions both stabilize the ligands at the target site, and help alter binding affinity and drug efficacy.

Citing Articles

Seaweed-based PPO inhibitors as a new frontier in biological weed control for sorghum cultivation: from ocean to field.

Suresh R, Karuppasamy R Protoplasma. 2025; .

PMID: 40035808 DOI: 10.1007/s00709-025-02049-x.


Molecular screening and dynamics simulation reveal potential phytocompounds in Swertia chirayita targeting the UspA1 protein of Moraxella catarrhalis for COPD therapy.

Uddin M, Chowdhury M, Hossain M, Ahsan A, Hossain M, Barik A PLoS One. 2025; 20(2):e0316275.

PMID: 40019889 PMC: 11870343. DOI: 10.1371/journal.pone.0316275.


Computer-aided drug repurposing & discovery for Hepatitis B capsid protein.

Mohebbi A, Nabavi S, Naderi M, Sharifian K, Behnezhad F, Mohebbi M In Silico Pharmacol. 2025; 13(1):35.

PMID: 40018383 PMC: 11861453. DOI: 10.1007/s40203-025-00314-8.


Targeting using natural African compounds as promising agents for managing diabetic complications.

Gakpey M, Aidoo S, Jumah T, Hanson G, Msipa S, Mbaoji F Front Bioinform. 2025; 5:1499255.

PMID: 39996053 PMC: 11848289. DOI: 10.3389/fbinf.2025.1499255.


Recent advances on anticancer activity of benzodiazine heterocycles through kinase inhibition.

Nafie M, Fahmy S, Kahwash S, Diab M, Dawood K, Abbas A RSC Adv. 2025; 15(7):5597-5638.

PMID: 39974315 PMC: 11836603. DOI: 10.1039/d4ra08134j.


References
1.
Desiraju G . The C-h···o hydrogen bond:  structural implications and supramolecular design. Acc Chem Res. 2013; 29(9):441-9. DOI: 10.1021/ar950135n. View

2.
LARKIN M, Blackshields G, Brown N, Chenna R, McGettigan P, McWilliam H . Clustal W and Clustal X version 2.0. Bioinformatics. 2007; 23(21):2947-8. DOI: 10.1093/bioinformatics/btm404. View

3.
HANSCH C, Klein T . Quantitative structure-activity relationships and molecular graphics in evaluation of enzyme-ligand interactions. Methods Enzymol. 1991; 202:512-43. DOI: 10.1016/0076-6879(91)02026-6. View

4.
von Itzstein M, Wu W, Kok G, Pegg M, Dyason J, Jin B . Rational design of potent sialidase-based inhibitors of influenza virus replication. Nature. 1993; 363(6428):418-23. DOI: 10.1038/363418a0. View

5.
Venkatachalam C, Jiang X, Oldfield T, Waldman M . LigandFit: a novel method for the shape-directed rapid docking of ligands to protein active sites. J Mol Graph Model. 2002; 21(4):289-307. DOI: 10.1016/s1093-3263(02)00164-x. View