Applying Ligands Profiling Using Multiple Extended Electron Distribution Based Field Templates and Feature Trees Similarity Searching in the Discovery of New Generation of Urea-Based Antineoplastic Kinase Inhibitors

Dokla, Eman; Mahmoud, Amr H.; Elsayed, Mohamed S.A.; El-Khatib, Ahmed H.; Linscheid, Michael W.; Khaled A M Abouzid;

Abstract


This study provides a comprehensive computational procedure for the discovery of novel urea-based antineoplastic kinase inhibitors while focusing on diversification of both chemotype and selectivity pattern. It presents a systematic structural analysis of the different binding motifs of urea-based kinase inhibitors and the corresponding configurations of the kinase enzymes. The computational model depends on simultaneous application of two protocols. The first protocol applies multiple consecutive validated virtual screening filters including SMARTS, support vector-machine model (ROC = 0.98), Bayesian model (ROC = 0.86) and structure-based pharmacophore filters based on urea-based kinase inhibitors complexes retrieved from literature. This is followed by hits profiling against different extended electron distribution (XED) based field templates representing different kinase targets. The second protocol enables cancericidal activity verification by using the algorithm of feature trees (Ftrees) similarity searching against NCI database. Being a proof-of-concept study, this combined procedure was experimentally validated by its utilization in developing a novel series of urea-based derivatives of strong anticancer activity. This new series is based on 3-benzylbenzo[d]thiazol-2(3H)-one scaffold which has interesting chemical feasibility and wide diversification capability. Antineoplastic activity of this series was assayed in vitro against NCI 60 tumor-cell lines showing very strong inhibition of GI50 as low as 0.9 uM. Additionally, its mechanism was unleashed using KINEX™ protein kinase microarray-based small molecule inhibitor profiling platform and cell cycle analysis showing a peculiar selectivity pattern against Zap70, c-src, Mink1, csk and MeKK2 kinases. Interestingly, it showed activity on syk kinase confirming the recent studies finding of the high activity of diphenyl urea containing compounds against this kinase. Allover, the new series, which is based on a new kinase scaffold with interesting chemical diversification capabilities, showed that it exhibits its "emergent" properties by perturbing multiple unexplored kinase pathways. © 2012 Dokla et al.


Other data

Title Applying Ligands Profiling Using Multiple Extended Electron Distribution Based Field Templates and Feature Trees Similarity Searching in the Discovery of New Generation of Urea-Based Antineoplastic Kinase Inhibitors
Authors Dokla, Eman ; Mahmoud, Amr H.; Elsayed, Mohamed S.A.; El-Khatib, Ahmed H.; Linscheid, Michael W.; Khaled A M Abouzid 
Keywords SPLEEN TYROSINE KINASE;ANTICANCER DRUG DISCOVERY;T-CELL-RECEPTOR;PHARMACOLOGICAL EVALUATION;BIOLOGICAL-ACTIVITY;POTENT INHIBITORS;GENE-EXPRESSION;INTERACTION MAP;FAMILY KINASE;SYK KINASE
Issue Date 27-Nov-2012
Publisher PUBLIC LIBRARY SCIENCE
Journal PLoS ONE 
Volume 7
Issue 11
ISSN 1932-6203
DOI 10.1371/journal.pone.0049284
PubMed ID 23185312
Scopus ID 2-s2.0-84869842182
Web of science ID WOS:000311535700027

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