A combined pharmacophore modeling, 3D-QSAR and molecular docking study of substituted bicyclo-[3.3.0]oct-2-enes as liver receptor homolog-1 (LRH-1) agonists

•Ligand based pharmacophore model was developed and validated for LRH-1 agonists.•Three different databases were screened by means of validated pharmacophore model.•CoMFA and CoMSIA models were developed and validated.•Docking analysis shows that His390 and Arg393 plays important role in binding of...

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Veröffentlicht in:Journal of molecular structure 2013-10, Vol.1049, p.315-325
Hauptverfasser: Lalit, Manisha, Gangwal, Rahul P., Dhoke, Gaurao V., Damre, Mangesh V., Khandelwal, Kanchan, Sangamwar, Abhay T.
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Sprache:eng
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Zusammenfassung:•Ligand based pharmacophore model was developed and validated for LRH-1 agonists.•Three different databases were screened by means of validated pharmacophore model.•CoMFA and CoMSIA models were developed and validated.•Docking analysis shows that His390 and Arg393 plays important role in binding of agonists. A combined pharmacophore modelling, 3D-QSAR and molecular docking approach was employed to reveal structural and chemical features essential for the development of small molecules as LRH-1 agonists. The best HypoGen pharmacophore hypothesis (Hypo1) consists of one hydrogen-bond donor (HBD), two general hydrophobic (H), one hydrophobic aromatic (HYAr) and one hydrophobic aliphatic (HYA) feature. It has exhibited high correlation coefficient of 0.927, cost difference of 85.178 bit and low RMS value of 1.411. This pharmacophore hypothesis was cross-validated using test set, decoy set and Cat-Scramble methodology. Subsequently, validated pharmacophore hypothesis was used in the screening of small chemical databases. Further, 3D-QSAR models were developed based on the alignment obtained using substructure alignment. The best CoMFA and CoMSIA model has exhibited excellent rncv2 values of 0.991 and 0.987, and rcv2 values of 0.767 and 0.703, respectively. CoMFA predicted rpred2 of 0.87 and CoMSIA predicted rpred2 of 0.78 showed that the predicted values were in good agreement with the experimental values. Molecular docking analysis reveals that π–π interaction with His390 and hydrogen bond interaction with His390/Arg393 is essential for LRH-1 agonistic activity. The results from pharmacophore modelling, 3D-QSAR and molecular docking are complementary to each other and could serve as a powerful tool for the discovery of potent small molecules as LRH-1 agonists.
ISSN:0022-2860
1872-8014
DOI:10.1016/j.molstruc.2013.06.035