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Structure-based optimization of potent and selective inhibitors of the tyrosine kinase erythropoietin producing human hepatocellular carcinoma receptor B4 (EphB4)
- Publication Year :
- 2009
- Publisher :
- American Chemical Society, 2009.
-
Abstract
- The tyrosine kinase EphB4 is an attractive target for drug design because of its recognized role in cancer-related angiogenesis. Recently, a series of commercially available xanthine derivatives were identified as micromolar inhibitors of EphB4 by high-throughput fragment-based docking into the ATP-binding site of the kinase domain. Here, we have exploited the binding mode obtained by automatic docking for the optimization of these EphB4 inhibitors by chemical synthesis. Addition of only two heavy atoms, methyl and hydroxyl groups, to compound 4 has yielded the single-digit nanomolar inhibitor 66, with a remarkable improvement of the ligand efficiency from 0.26 to 0.37 kcal/(mol per non-hydrogen atom). Compound 66 shows very high affinity for a few other tyrosine kinases with threonine as gatekeeper residue (Abl, Lck, and Src). On the other hand, it is selective against kinases with a larger gatekeeper. A 45 ns molecular dynamics (MD) simulation of the complex of EphB4 and compound 66 provides further validation of the binding mode obtained by fragment-based docking.
- Subjects :
- Models, Molecular
10120 Department of Chemistry
Stereochemistry
Receptor, EphB4
Drug Evaluation, Preclinical
Molecular Conformation
Substrate Specificity
Inhibitory Concentration 50
Structure-Activity Relationship
Drug Discovery
540 Chemistry
10019 Department of Biochemistry
Structure–activity relationship
Humans
Erythropoietin
Protein Kinase Inhibitors
Ligand efficiency
ABL
Chemistry
Kinase
3002 Drug Discovery
Computational Biology
Reproducibility of Results
Protein kinase domain
Biochemistry
Docking (molecular)
1313 Molecular Medicine
Molecular Medicine
570 Life sciences
biology
Tyrosine kinase
Proto-oncogene tyrosine-protein kinase Src
Subjects
Details
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....c449c8b9a6fd4a7123dafbe38cef15c9
- Full Text :
- https://doi.org/10.5167/uzh-23630