Artículos de revistas
Computational studies of TGF-ßRI (ALK-5) inhibitors |b analysis of the binding interactions between ligand–receptor using 2D and 3D techniques
Fecha
2013-07Registro en:
European Journal of Pharmaceutical Sciences, Amsterdam, v. 49, n. 4, p. 542–549, jul. 2013
0928-0987
10.1016/j.ejps.2013.05.015
Autor
Araujo, Sheila Cruz
Maltarollo, Vinícius Gonçalves
Honorio, Káthia Maria
Institución
Resumen
ALK-5 (Activin-Like Kinase 5) is a biological receptor involved in a variety of pathological processes such
as cancer and fibrosis. ALK-5 receptor propagates an intracellular signaling that forms a protein complex
capable of reaching the nucleus and modulating the gene transcription. In the present study, comparative
molecular field analysis (CoMFA) and hologram quantitative structure–activity relationship (HQSAR)
studies were conducted on a series of potent ALK-5 inhibitors. Significant correlation coefficients (CoMFA,
r2 = 0.99 and q2 = 0.85; HQSAR, r2 = 0.92 and q2 = 0.72) were obtained, indicating the predictive potential
of the 2D and 3D models for untested compounds. The models were then used to predict the potency of a
test set, and the predicted values from the HQSAR and CoMFA models were in good agreement with the
experimental results. The final QSAR models, along with the information obtained from 3D (steric and
electrostatic) contour maps and 2D contribution maps, can be useful for the design of novel bioactive
ligands