Content area

Abstract

One of the most promising anticancer and recent antimalarial targets is the heterodimeric zinc-containing protein farnesyltransferase (FT). In this work, we studied a highly diverse series of 192 Abbott-initiated imidazole-containing compounds and their FT inhibitory activities using 3D-QSAR and docking, in order to gain understanding of the interaction of these inhibitors with FT to aid development of a rational strategy for further lead optimization. We report several highly significant and predictive CoMFA and CoMSIA models. The best model, composed of CoMFA steric and electrostatic fields combined with CoMSIA hydrophobic and H-bond acceptor fields, had r2 = 0.878, q2 = 0.630, and rpred2= 0.614. Docking studies on the statistical outliers revealed that some of them had a different binding mode in the FT active site based on steric bulk and available active site space, explaining why the predicted activities differed from the experimental activities. (PUBLICATION ABSTRACT)

Details

Title
Imidazole-containing farnesyltransferase inhibitors: 3D quantitative structure-activity relationships and molecular docking
Author
Xie, Aihua; Odde, Srinivas; Prasanna, Sivaprakasam; Doerksen, Robert J
Pages
431-48
Publication year
2009
Publication date
Jul 2009
Publisher
Springer Nature B.V.
ISSN
0920654X
e-ISSN
15734951
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
216363907
Copyright
Springer Science+Business Media B.V. 2009